Mr. Zhou Chen Junnan | Innovative Leadership | Best Researcher Award

Mr. Zhou Chen Junnan | Innovative Leadership | Best Researcher Award

China Agricultural University, China

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Early Academic Pursuits 📚

Zhou Chenjunnan, a master’s degree student at China Agricultural University, has shown an unwavering commitment to the field of resources and the environment. Specializing in the resource utilization of solid waste, Zhou’s academic journey is marked by curiosity and determination. During undergraduate studies, Zhou developed a deep interest in the management and recycling of organic waste, laying a strong foundation for future research endeavors. This passion led to an advanced academic focus on composting processes and the challenges of sustainable waste management, a crucial topic for addressing global environmental issues.

Professional Endeavors and Research Focus 🔬

Currently, Zhou’s research revolves around resource utilization through aerobic composting of biomass waste, particularly in controlled ecological life support systems (CELSS). These systems are integral to long-term manned space missions, where waste recycling and environmental control are critical. Zhou has spearheaded a key research project under the auspices of the Key Laboratory of Human Factors Engineering, investigating the oxygen demand patterns during biomass waste degradation and developing a low-oxygen composting process. This work exemplifies innovation in integrating environmental sustainability with cutting-edge aerospace applications.

Zhou has authored and co-authored four significant research articles, including two first-authored papers published in prestigious EI and SCI-indexed journals. These papers explore the feasibility of composting organic solid waste in CELSS and the microbial enhancements associated with such processes. Additionally, Zhou’s expertise extends to odor control in livestock and poultry waste, where research on deodorizing strains has determined optimal spraying techniques for minimizing emissions.

Contributions and Impact 🌍

Zhou’s contributions to solid waste management are both theoretical and practical. The extensive study of CELSS organic waste has clarified its composting feasibility and microbial enhancement effects. Zhou’s work on optimizing oxygen supply parameters during composting stages has been instrumental in improving waste recycling methods within CELSS environments. This not only advances sustainability in space exploration but also provides innovative solutions for terrestrial waste management challenges.

Further, Zhou has contributed to odor control research, focusing on reducing the environmental impact of livestock and poultry farming. By experimenting with composite deodorizing bacteria, Zhou has determined effective strategies for mitigating odor emissions under varying conditions, a breakthrough with potential applications in agricultural and industrial sectors.

Accolades and Recognition 🏆

Zhou’s dedication to research has been recognized on national and international platforms. A notable milestone was participation in the Third National Conference on Environmental Control and Life Support Technology for Manned Spaceflight, where Zhou’s research was featured prominently as a wallpaper presentation and included in the conference abstracts. This recognition underscores the relevance and quality of Zhou’s work in advancing environmental sustainability in space and beyond.

Zhou’s innovative contributions have also resulted in two published invention patents:

  1. A method for preparing functional liquid fertilizer by compounding kitchen waste biogas slurry with Bacillus amyloliquefaciens (202311738373.4).
  2. A deodorizing strain, deodorizing agent, and its application (202411423358.5).

These patents reflect a practical application of research findings, further cementing Zhou’s role as a transformative thinker in waste resource utilization.

Impact and Influence ✨

Zhou’s research addresses global challenges in sustainable waste management by bridging gaps between theory and application. The work on CELSS offers critical insights for long-term human survival in isolated environments, such as space missions, while the studies on odor control contribute to improving environmental quality on Earth. Zhou’s focus on microbial enhancements and low-oxygen composting processes represents a significant step toward reducing greenhouse gas emissions and optimizing waste recycling.

Moreover, Zhou’s innovative approach has influenced peers and collaborators in the academic and professional communities, inspiring new lines of inquiry in sustainable technologies. By presenting findings in prominent journals such as Journal of Space: Science & Technology and Journal of Environmental Chemical Engineering, Zhou ensures the dissemination of valuable knowledge to global audiences.

Legacy and Future Contributions 🌟

Looking ahead, Zhou aims to expand research into advanced composting technologies and develop scalable solutions for urban and rural waste management. With a vision to integrate biotechnological advancements into environmental engineering, Zhou aspires to contribute to building a more sustainable world. Plans include collaborating with international research institutions to refine CELSS technologies and exploring applications in circular economies.

Zhou’s legacy is rooted in a commitment to innovation, sustainability, and environmental stewardship. The ability to combine theoretical insights with practical applications highlights Zhou’s potential to become a leading figure in resource and environmental engineering.

📝Notable Publications

The Production of Solid Wastes in CELSS and the Difficulties in Recycling by Composting: A Review

Authors: Chenjunnan Zhou, Zhao Xu, Lingxiao Wang, Rulu Qiao, Yanming Li, Ruixue Chang, Weidang Ai

Journal: Space: Science & Technology

Year: 2024

Mr. Junpeng Liu | Innovative Leadership | Best Researcher Award | 3349

Mr. Junpeng Liu | Innovative Leadership | Best Researcher Award

Beijing Chaoyang Hospital Affiliated to Capital Medical University, China

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🏫 Early Academic Pursuits

Junpeng Liu began his academic journey with a deep-rooted commitment to medicine, pursuing a Master’s degree in medicine that set the stage for a promising career. With rigorous training and an emphasis on both clinical and research skills, he developed a solid foundation in medical sciences, focusing on areas with substantial clinical relevance. His passion for learning and dedication to medical advancement were evident from the start, driving him to delve into challenging medical issues and actively contribute to the field through his studies and research.

👨‍⚕️ Professional Endeavors

Currently serving as a Resident Physician at Beijing Chaoyang Hospital, affiliated with Capital Medical University, Dr. Liu has proven himself a dedicated medical professional with a keen interest in patient care and research. His clinical practice includes managing complex cases, particularly in the treatment of conditions like multiple myeloma, diabetic foot, and other challenging ailments. By integrating his knowledge of cutting-edge medical techniques and therapies with hands-on clinical experience, he has helped improve patient outcomes in notable ways. His role not only involves direct patient care but also active participation in hospital projects and collaborative research initiatives aimed at advancing the hospital’s mission of providing top-quality healthcare.

🧪 Contributions and Research Focus

Dr. Liu has been at the forefront of various impactful research projects, all of which align with his vision of enhancing medical treatment through innovative approaches. His research portfolio includes five significant projects:

  1. Surgical Treatment of Multiple Myeloma: This project explores surgical solutions for multiple myeloma, focusing on improving quality of life for patients dealing with severe neurological compression.
  2. Prognostic Factors of Multiple Myeloma: Dr. Liu has analyzed factors influencing the prognosis of multiple myeloma, contributing to the understanding of disease progression and potential interventions.
  3. Clinical Applications of Artificial Intelligence (AI): His exploration of AI in clinical settings aims to optimize diagnostics, treatment plans, and patient monitoring. This research is particularly valuable as AI becomes more integrated into healthcare.
  4. Regenerative Mechanisms in Non-Healing Wounds: In response to the persistent challenges of non-healing wounds, Dr. Liu has researched regenerative therapies that could pave the way for enhanced healing solutions.
  5. Clinical Treatment of Diabetic Foot: Given the prevalence of diabetic complications, Dr. Liu’s work on diabetic foot treatments aims to reduce morbidity and improve life quality among diabetic patients.

🏆 Accolades and Recognition

Dr. Liu’s expertise and commitment have not gone unnoticed. He has authored nine high-impact SCI articles as the first author, with a cumulative impact factor of over 25, underscoring his influence in the field. His work has been published in several prestigious journals, with five articles appearing in JCR Q1 journals. Notably, his study on the “Analysis of the efficacy of separation surgery for severe neurological compression in multiple myeloma” was published in the European Spine Journal, a top-ranking journal in its category with an impact factor of 3.1. In addition to his publications, Dr. Liu was invited to present a poster at the AOFAS (American Orthopaedic Foot & Ankle Society) conference, highlighting his research contributions to an international audience.

🌍 Impact and Influence

Dr. Liu’s research has not only expanded knowledge in his specialty areas but has also had a measurable impact, as indicated by a citation index of 27.3. This demonstrates the scientific community’s recognition of the value of his work, particularly in the domains of oncology, regenerative medicine, and artificial intelligence. His research on multiple myeloma and diabetic complications has provided valuable insights for practitioners and researchers alike, potentially influencing treatment guidelines and clinical practices.

🛠️ Legacy and Future Contributions

Looking ahead, Dr. Liu is dedicated to advancing medical science and patient care, particularly in the realms of oncology, artificial intelligence applications in healthcare, and regenerative medicine. His commitment to clinical excellence and research-driven solutions reflects a desire to leave a lasting impact on his field. As he continues his journey, Dr. Liu aspires to refine treatment methodologies for complex diseases, develop innovative approaches to wound care, and contribute to the integration of AI in clinical settings. His future work promises to further bridge the gap between clinical practice and technological advancements, driving forward the standards of healthcare and leaving a legacy for upcoming medical professionals.

📝Notable Publications

 KIAA1429 increases FOXM1 expression through YTHDF1–mediated m6A modification to promote aerobic glycolysis and tumorigenesis in multiple myeloma

Authors: Wu, Y., Luo, Y., Yao, X., … He, Y., Du, X.

Journal: Cell Biology and Toxicology

Year: 2024

 Which factors are associated with adverse prognosis in multiple myeloma patients after surgery? – preliminary establishment and validation of the nomogram

Authors: Liu, J.-P., Xu, Z.-Y., Wu, Y., … Du, X.-R., Yao, X.-C.

Journal: World Journal of Surgical Oncology

Year: 2024

 SIRT5 promotes malignant advancement of chordoma by regulating the desuccinylation of c-myc

Authors: Jiang, M., Huang, Z., Chen, L., … Liu, J., Wu, Y.

Journal: BMC Cancer

Year: 2024

From Novice to Mastery: Learning Curve and Efficacy Analysis of Short-Term Spinal Cord Stimulation for Diabetic Foot Ulcers

Authors: Liu, J.-P., Yao, X.-C., Xu, Z.-Y., … Du, X.-R., Zhao, H.

Journal: World Neurosurgery

Year: 2024

 Correlation between initial alkaline phosphatase levels and overall survival in newly diagnosed multiple myeloma patients

Authors: Tan, J., Liu, J.-P., Yao, X.-C., … Li, M., Du, X.-R.

Journal: Translational Cancer Research

Year: 2024

Dr. Boris Arnaud Kouomogne Nteungue | Innovative Leadership | Best Researcher Award

Dr. Boris Arnaud Kouomogne Nteungue | Innovative Leadership | Best Researcher Award

Central University of Nicaragua, Cameroon

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Early Academic Pursuits 📚

Boris Arnaud Kouomogne Nteungue’s academic journey began with an unwavering commitment to public health, which led him to pursue a Ph.D. in Public Health at the Central University of Nicaragua and Texila American University. Born in Cameroon and deeply aware of the health challenges his country faces, he directed his studies toward infectious disease prevention and control (IPC). His dedication to understanding the roots and repercussions of infectious diseases aligns with his objective to create meaningful change in public health. As a 34-year-old doctoral student, he has channeled his energy into research aimed at improving healthcare practices, policies, and outcomes, focusing particularly on infection prevention.

Professional Endeavors 🌍

Over the last decade, Boris’s professional path has been marked by influential roles and impactful initiatives. From 2021 to 2024, he served as an Infection Prevention and Control (IPC) Expert with the World Health Organization in Cameroon, where he was instrumental in responding to the COVID-19 pandemic. His work in the WHO included planning, implementing, and evaluating IPC strategies across various healthcare facilities, ensuring that healthcare workers were protected, and infectious spread was minimized. In addition, Boris held the critical role of General Coordinator of Nursing at Yaounde’s Emergency Center under the Ministry of Public Health in Cameroon. This role saw him oversee emergency nursing care, ensuring high standards and safe practices were adhered to during patient care. Through these experiences, Boris has become a recognized leader in public health and infection control, directly contributing to his community’s resilience in the face of health crises.

Contributions and Research Focus 🔬

Boris has made significant strides in research, particularly within the field of Infection Prevention and Control (IPC). His recent publications reflect his dedication to studying health challenges in crisis situations, focusing on the IPC measures in place during the COVID-19 pandemic in Cameroon. His work not only evaluated existing strategies but also contributed actionable insights by identifying barriers to effective IPC and recommending improvements based on the World Health Organization’s guidelines. Furthermore, Boris has extended his research to include baseline assessments of IPC in healthcare settings, laying the groundwork for continued advancements in infection prevention protocols.

His studies aim to provide evidence-based approaches that healthcare facilities can adopt to maintain hygiene and prevent infection transmission. One of his notable contributions was an evaluation of Cameroon’s national IPC strategy through a socio-ecological lens. This research identified structural and procedural barriers, suggesting sustainable interventions for the Ministry of Health to consider in developing a stronger national IPC framework. His multi-faceted research approach includes primary healthcare, emergency care, and road traffic accident care—areas he believes are pivotal to advancing public health standards in Cameroon and beyond.

Accolades and Recognition 🏆

Boris’s commitment to IPC and public health has been recognized on multiple levels. He has had two manuscripts accepted for publication in the Infection Prevention in Practice Journal, a testament to his skill and dedication in research. Additionally, his consultancy projects have seen him collaborate with leading organizations, such as his role as a field researcher in a study on the efficacy of antivenom. This study, published in PLOS Neglected Tropical Diseases, reflects his dedication to addressing high-impact health issues in Africa.

Beyond publications, Boris has served as a reviewer for prestigious journals, including the American Journal of Public Health. This role reflects his expertise in public health and research rigor, as well as his commitment to advancing the quality and relevance of global health literature. Boris is also an active member of prominent professional bodies, including the American Society of Tropical Medicine and Hygiene, the International Epidemiological Association, and the Cameroon Society of Epidemiology. These memberships further enhance his network, enabling him to share insights and learn from experts worldwide.

Impact and Influence 🌟

Boris’s research and advocacy work has had a far-reaching impact on public health practices, particularly in Cameroon. His research findings have informed policy and operational improvements within the healthcare system, specifically around IPC and emergency care. Through his role with the WHO, he actively trained healthcare workers, elevating IPC standards in response to COVID-19. These training initiatives empowered healthcare personnel to identify and address IPC shortcomings, thus enhancing the safety and effectiveness of healthcare services. His fieldwork and recommendations have laid the groundwork for sustainable public health strategies, contributing to better care outcomes in Cameroon.

In addition, his work on road safety, reflected in his publication on drinking and driving in Cameroon, highlights his dedication to preventive public health measures. This research has implications for traffic safety policies, aligning with his broader goal to improve healthcare and preventative care in all aspects of public life.

Legacy and Future Contributions 🏅

As Boris continues his academic and professional journey, he is committed to leaving a legacy of impactful research and transformative public health practices. His ongoing Ph.D. research, combined with his work as a WHO IPC expert, positions him to make lasting contributions to infection prevention strategies in healthcare settings. He envisions a healthcare system in Cameroon—and by extension, Africa—that is equipped with the knowledge, resources, and frameworks necessary to combat infectious diseases effectively. His research underscores the importance of sustainable IPC practices, a message he aims to reinforce through future publications, presentations, and policy recommendations.

Boris’s goal is not just to influence current practices but to foster a culture of prevention, training, and preparedness in public health systems. His continued contributions to IPC, emergency care, and public health will help build resilient healthcare infrastructures that can withstand future health crises. Through his dedication, Boris aims to empower a new generation of healthcare workers, ensuring that they are equipped with the knowledge and tools necessary to protect communities and save lives.

📝Notable Publications

Title: Roadside surveys of drinking and driving in Cameroon

Authors: Y. Oyono, H. Gjerde, E. Acha Asongalem, B.A. Kouomogne Nteungue, …

Journal: Traffic Injury Prevention

Year: 2021

Title: Prevalence of alcohol among drivers, riders and pedestrians injured in road traffic crashes in Cameroon: a cross-sectional study

Authors: Y. Oyono, H. Gjerde, T. Kelley-Baker, E.A. Asongalem, …

Journal: International Journal of Injury Control and Safety Promotion

Year: 2022

 

Assoc Prof Dr Nasser Mozayani | Decision-making and Problem-solving | Best Researcher Award

Assoc Prof Dr Nasser Mozayani | Decision-making and Problem-solving | Best Researcher Award

Iran University of Science and technology, Iran

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Early Academic Pursuits 🎓

Dr. Nasser Mozayani’s academic journey began with a Bachelor’s degree in Electrical Engineering, specializing in Computer Hardware, from Sharif University of Technology in Tehran, Iran, in 1990. Driven by a passion for advanced computational frameworks, he pursued further studies in France, obtaining an M.Sc. in Telematics and Information Systems from SUPELEC, Rennes, in 1994. His master’s thesis, “Sequential Connectionist Machine: A General Framework,” delved into creating structured, sequential systems that could evolve in response to their computational environment. In 1998, he completed his Ph.D. in Informatics from the University of Rennes I, France, with a dissertation on “Incorporation of a Spatio-Temporal Coding to Neural Networks,” marking an early focus on neural network structures and their adaptability. This research marked the beginning of a strong academic and professional focus on machine learning and artificial intelligence.

Professional Endeavors 🏢

Since 1999, Dr. Mozayani has served as an Associate Professor at the Iran University of Science and Technology (IUST), where he has taught a range of foundational and advanced courses to both undergraduate and graduate students. His expertise spans subjects such as Electronic Circuits, Digital Electronics, and Electric Circuits, alongside Computational Intelligence and Artificial Neural Networks, where he has contributed extensively to developing these courses.

Dr. Mozayani has held various leadership roles, including as Dean of the Computer Engineering Department (2009-2014 and 2023-present), Head of the Computer Center, and Deputy of Research and Technology at IUST’s International Campus. His influence has been instrumental in shaping the university’s technology policies and enhancing the research infrastructure. His contributions as the Dean of IUST’s E-learning Center from 2006 to 2009 and 2014 to 2018 underscore his commitment to advancing digital learning solutions, demonstrating his forward-thinking approach to integrating technology into education.

Contributions and Research Focus 🔬

Dr. Mozayani’s research has been pivotal in advancing machine learning, multi-agent systems, and the smart grid. Over two decades, his contributions have covered a wide range of innovative projects, primarily centered on using artificial intelligence to address complex challenges in grid management, finance, healthcare, and digital environments. His recent works include:

  • Smart Grid and Metaverse: Dr. Mozayani has been actively involved in developing communication protocols and demand response frameworks within the smart grid. His reports on virtual power plant formation and flexible communication protocols exemplify his efforts to enhance grid efficiency and sustainability.
  • Healthcare Applications of Machine Learning: In response to the COVID-19 pandemic, Dr. Mozayani conducted a comprehensive study in 2021 that explored machine learning methodologies to predict hospitalization length and mortality factors in COVID-19 patients.
  • Artificial Neural Networks and Simulation: His graduate courses, including Simulation and Educational Games, offer students insights into simulation technologies and neural networks. His long-term research commitment to reinforcement learning has yielded applications in high-level agent interactions and behavior-based system design, as seen in projects like Robocup agent training and traffic light control systems.

Dr. Mozayani has consistently integrated his research with practical applications, which include designing distributed library systems, developing educational resources, and creating software frameworks like learning management systems and digital libraries.

Accolades and Recognition 🏆

Dr. Mozayani has received numerous awards, including several high rankings in competitive robot events as part of the IUST RoboCup team. His team notably secured first place in the Rescue Virtual Robots competition at the Iran Open and the Khwarizmi Young Award in 2009 and 2010. He also supervised the 2-D football simulation team, which earned a fourth-place finish in a global RoboCup competition in 2013. These achievements showcase his leadership in advancing robotics research and his skill in integrating AI concepts into competitive and practical frameworks. His influence extended to mentoring student teams that competed successfully in digital library development, further highlighting his expertise in educational and library systems.

Impact and Influence 🌍

Dr. Mozayani’s contributions extend well beyond his technical achievements; he has been influential in shaping computer engineering education and research infrastructure at IUST. As a member of the editorial boards for both the CSI Journal of Computer Science and Information Technology and the International Journal of Information & Communication Technology Research, he provides valuable insights that contribute to the academic community. His efforts in managing and directing various departments, like the Computer Center and E-learning Center, have left a lasting impact on the technological capabilities and learning resources available at IUST.

Dr. Mozayani’s work on the Board of Trustees for the Iran Computer and Video Games Foundation from 2016 to 2022 underscores his commitment to fostering an environment where technology, education, and entertainment intersect. His work there involved policy creation and oversight that helped drive innovation and support for digital gaming and simulation, which aligns well with his academic pursuits in simulation and educational games.

Legacy and Future Contributions 🌐

With a foundation of nearly three decades in computer engineering, Dr. Mozayani has established a legacy of academic excellence, innovation, and practical application of AI and machine learning. As he continues in his roles as a department dean and researcher, his work on smart grids and machine learning applications holds promise for future developments that address critical challenges in energy efficiency, metaverse expansion, and multi-agent system integration.

By combining a comprehensive background in engineering education with hands-on leadership in technology departments, Dr. Mozayani remains a central figure in fostering Iran’s computer engineering advancements. His students and colleagues are likely to benefit from his ongoing research, potentially influencing future applications of AI and multi-agent systems within both local and global contexts. Dr. Mozayani’s dedication to advancing technology in education and his forward-thinking research make him a respected and influential leader in the fields of AI, machine learning, and smart grid technology.

📝Notable Publications

Traffic light control in non-stationary environments based on multi-agent Q-learning

Authors: M. Abdoos, N. Mozayani, A.L.C. Bazzan

Journal: Proceedings of the 2011 14th International IEEE Conference on Intelligent Transportation Systems

Volume/Issue/Pages: Not specified

Year: 2011

Holonic multi-agent system for traffic signals control

Authors: M. Abdoos, N. Mozayani, A.L.C. Bazzan

Journal: Engineering Applications of Artificial Intelligence

Volume: 26

Issue: 5-6

Pages: 1575-1587

Year: 2013

Fuzzy running average and fuzzy background subtraction: concepts and application

Authors: M.H. Sigari, N. Mozayani, H. Pourreza

Journal: International Journal of Computer Science and Network Security

Volume: 8

Issue: 2

Pages: 138-143

Year: 2008

The pedagogical agent enhances mathematics learning in ADHD students

    • Authors: N. Mohammadhasani, H. Fardanesh, J. Hatami, N. Mozayani, R.A. Fabio

Journal: Education and Information Technologies

Volume: 23

Issue: Not specified

Pages: 2299-2308

Year: 2018

Factors related to e-learner dropout: Case study of IUST eLearning center

Authors: M.A. Rostaminezhad, N. Mozayani, D. Norozi, M. Iziy

Journal: Procedia – Social and Behavioral Sciences

Volume: 83

Issue: Not specified

Pages: 522-527

Year: 2013

 

Assist Prof Dr. Serdal Damarseçkin | Innovative Leadership | Best Researcher Award|

Assist Prof Dr. Serdal Damarseçkin | Innovative Leadership | Best Researcher Award|

Şırnak University, Turkey

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Early Academic Pursuits 🎓

Serdal Damarseçkin’s academic journey began with a strong foundation in physics. He earned his bachelor’s degree from Yüzüncü Yıl University, where he completed a program in the Department of Physics between 1999 and 2003. Demonstrating an early passion for understanding the complexities of the universe, Damarseçkin continued his studies at the same university, where he pursued his master’s degree. His master’s thesis, titled “Some Quantum Mechanical Solutions for the Two-Body Interacting Problem with a Screened Coulomb Potential”, reflects his early interest in complex quantum systems, which would later feed into his research in particle physics.

His pursuit of academic excellence culminated in his doctoral studies at CERN, in partnership with Çukurova University, between 2011 and 2018. His PhD thesis, “Search for New Particles Decaying to Dijet at √𝑠 = 13 TeV Proton-Proton Collisions with Data Scouting Technique at CMS”, marked the beginning of his significant contributions to high-energy physics, especially in the field of new physics.

Professional Endeavors in Particle Physics 🚀

Damarseçkin’s career has been largely shaped by his involvement with CERN, where he participated in groundbreaking projects within the Compact Muon Solenoid (CMS) experiment, one of the largest and most complex particle detectors at the Large Hadron Collider (LHC). His research focused on the search for new physics beyond the Standard Model, investigating two-jet resonances, dark matter, extra dimensions, and potential supersymmetric particles.

In addition to his work on new particle searches, Damarseçkin contributed to detector calibration and development. From 2013 to 2017, he was involved in the installation and upgrade of the CMS detector, a critical task in ensuring the precision and reliability of experimental data. His expertise in CMS HCAL (hadron calorimeter) calibration with test beam data from 2014 to 2017 further highlights his technical proficiency in refining the tools used to explore fundamental particles.

Contributions and Research Focus 🔬

Damarseçkin’s contributions to particle physics are deeply rooted in his exploration of two-jet resonance phenomena at √𝑠 = 13 TeV proton-proton collisions, carried out with the data scouting technique. His technical notes reflect this focus, showcasing key studies such as:

Searches for dijet resonances in pp collisions at √𝑠 = 13 TeV using up to 36 fb⁻¹ of data.
Calo scouting at 13 TeV, a pioneering technique that allows for more efficient analysis of large datasets, crucial in searching for rare phenomena like new particle decays.
In addition to particle physics, Damarseçkin’s research interests extend to the field of renewable energy. His international publications demonstrate his engagement in hydrogen energy research, a key area in sustainable energy development. His articles on hydrogen production and solar energy systems—such as the paper on hydrogen production from ZnCl2 salt and the integration of solar ponds with parabolic trough collectors—illustrate his cross-disciplinary approach to scientific inquiry, bridging the gap between physics and energy sustainability.

Accolades and Recognition 🏆

Damarseçkin’s work in high-energy physics and renewable energy has garnered recognition within the scientific community. His research on new particles and energy systems has led to several international publications in highly regarded journals. The paper on hydrogen production from ZnCl2 salt, published in the International Journal of Hydrogen Energy in 2024, is a testament to his contribution to advancing hydrogen energy technologies. His ability to address both fundamental physics questions and real-world energy challenges positions him as a versatile and impactful researcher.

Impact and Influence 🌍

Serdal Damarseçkin’s work at CERN has not only contributed to the discovery of new particles but also advanced the methodologies used in particle physics experiments. His involvement in the calibration and development of the CMS detector ensured the precision of one of the world’s most advanced scientific instruments, impacting countless research projects that rely on the LHC’s data.

In renewable energy, his focus on hydrogen energy—one of the most promising clean energy solutions—illustrates his commitment to addressing global energy challenges. His innovative approach to integrating solar energy technologies with hydrogen production reflects a forward-thinking vision for sustainable energy systems.

Legacy and Future Contributions ✨

Looking ahead, Damarseçkin’s legacy will likely be shaped by his dual contributions to both high-energy physics and renewable energy. His work on the search for new particles in proton-proton collisions remains a cornerstone of efforts to expand our understanding of the universe’s fundamental forces and particles. Simultaneously, his research into sustainable energy systems holds significant promise in the fight against climate change and the global transition to clean energy.

As Damarseçkin continues his research, he will undoubtedly leave a lasting impact in both fields, fostering a new generation of scientists who will build upon his contributions to physics and energy research. His interdisciplinary expertise positions him to be a leader in the quest for both new scientific discoveries and innovative solutions to global challenges.

📝Notable Publications

Assoc Prof Dr. Jing Dong | Decision-making and Problem-solving | Best Researcher Award

Assoc Prof Dr. Jing Dong | Decision-making and Problem-solving | Best Researcher Award

Dalian University of Technology, China

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Early Academic Pursuits 🎓

Jing Dong’s academic journey began with a Ph.D. in Urban Planning from Tianjin University, a prestigious institution in China. Her early research centered on understanding the role of ecological systems in urban environments, with a focus on mitigating the effects of climate change through sustainable planning. These formative years set the foundation for her later work, where she would delve deeper into the integration of nature-based solutions (NBS) into urban planning strategies. Her academic excellence and curiosity led her to explore innovative ways of addressing the ecological and social challenges that cities face today.

Professional Endeavors and Contributions 🌍

As an Associate Professor and Doctoral Supervisor at Dalian University of Technology, Jing Dong has established herself as a leader in ecological urban planning. Her professional work primarily focuses on climate adaptation strategies that utilize nature-based solutions, such as green roofs and urban greening initiatives. Through her innovative approach to quantifying the multiple benefits of green roofs—ranging from cooling effects and runoff reduction to biodiversity enhancement—she has developed assessment methods that are both practical and scientifically sound.

Jing has also established a set of multi-objective optimization planning methods that enhance the integration of these solutions with spatial planning, ensuring a balance between ecological benefits and costs. This work not only advances urban planning methodologies but also demonstrates the importance of harmonizing environmental and economic considerations in sustainable development.

Her role as a consultant in nine industry projects, coupled with her academic output, highlights her deep engagement with both the theoretical and practical dimensions of urban planning. The completion of the 13th Five-Year Key R&D Program sub-themes, in collaboration with the Institute of Urban Environment of the Chinese Academy of Sciences and the Xiamen Planning Institute, further underscores her significant contributions to national and regional urban planning efforts.

Research Focus and Innovations 🔬

Jing Dong’s research agenda is dedicated to finding practical, scalable solutions to climate-related challenges in urban areas. Her work is grounded in the exploration of nature-based solutions (NBS), which leverage natural systems to address urban challenges such as heat, flooding, and air pollution. Her innovative methods for assessing the ecological benefits of green roofs—such as their cooling effects and contribution to biodiversity—have made significant strides in promoting greener, more sustainable cities.

One of her major achievements is the development of multi-objective optimization tools that help city planners assess and prioritize ecological interventions. This enables more effective climate adaptation strategies that balance environmental gains with financial and logistical constraints. Her work is particularly relevant in the context of China’s rapid urbanization, where the need for climate-resilient infrastructure is more pressing than ever.

Jing Dong has led five national and provincial research projects, demonstrating her capacity to manage complex, interdisciplinary projects. Her research output includes over 30 academic papers published in top-tier journals, with 19 as the first or corresponding author. Her work has been featured in seven CAS TOP journals, a testament to the high-impact nature of her research. In addition to her publications, Jing authored a monograph and filed two patents, further solidifying her contributions to the field.

Accolades and Recognition 🏆

Jing Dong’s work has been widely recognized with several prestigious awards. Among her notable accolades is the second prize for the National Outstanding Urban and Rural Planning and Design Award, which is a significant honor in her field. She has also been awarded the third prize for the Outstanding Achievement Award in Social Sciences, as well as the third prize for Excellent Urban and Rural Planning Design at the provincial and ministerial levels.

These awards highlight her contribution to both academic research and practical planning solutions. Her work has had a direct impact on urban policy and design, improving the sustainability and livability of cities through the integration of ecological principles into planning frameworks.

Impact and Influence 🌱

Jing Dong’s influence extends beyond the academic sphere. Her work on nature-based solutions has shaped policy discussions around urban climate adaptation, particularly in China’s fast-growing urban regions. The tools and methodologies she has developed have been adopted by urban planners and policymakers, guiding the implementation of green infrastructure projects in cities facing environmental degradation and climate-related risks.

Her leadership in consulting projects has enabled her to bring cutting-edge research into practical application, benefiting communities by improving urban resilience. This translation of academic research into real-world solutions is one of the hallmarks of her career, making her a sought-after expert in urban planning and climate adaptation.

Legacy and Future Contributions 🚀

Looking ahead, Jing Dong is poised to continue making significant contributions to urban sustainability. Her ongoing projects on climate adaptation planning for nature-based solutions are expected to push the boundaries of current knowledge in this field. With two patents currently under process, she is set to further expand the technological and methodological toolkit available to urban planners.

Her commitment to fostering sustainable cities and communities ensures that her legacy will endure through the improved livability and resilience of the urban environments she helps design. Future generations of researchers and planners are likely to build upon her work, using her innovative approaches to address the challenges of climate change and urbanization.

In sum, Jing Dong’s career is marked by a profound commitment to ecological urban planning, climate adaptation, and the pursuit of sustainable solutions. Through her research, teaching, and consultancy work, she has had a lasting impact on both academic thought and urban policy, with the promise of even greater achievements in the future.

Notable Publications

Framework of street grid-based urban heat vulnerability assessment: Integrating entropy weight method and BPNN model

Authors: Guo, F., Zheng, R., Zhao, J., Zhang, H., Dong, J.

Journal: Urban Climate

Year: 2024

Application and future of local climate zone system in urban climate assessment and planning—Bibliometrics and meta-analysis

Authors: Zhang, H., Bai, J., Zhao, J., Dong, J., Cai, J.

Journal: Cities

Year: 2024

Finer-scale urban health risk assessment based on the interaction perspective of thermal radiation, human, activity, and space

Authors: Guo, R., Guo, F., Dong, J., Zheng, R., Zhang, H.

Journal: Frontiers of Architectural Research

Year: 2024

Factors influencing outdoor thermal comfort in a coastal park during the transition seasons in cold regions of China

Authors: Zhang, H., Wang, Y., Guo, F., Dong, J., Zhu, P.

Journal: Urban Climate

Year: 2024

Potential evaluation and implementation strategy for pocket park construction in high-density urban areas: A case study in Dalian, China

Authors: Dong, J., Guo, R., Guo, F., Cai, J.

Journal: Frontiers of Architectural Research

Year: 2024

Assoc Prof Dr. Tao Li | Decision-making and Problem-solving | Best Researcher Award

Assoc Prof Dr. Tao Li | Decision-making and Problem-solving | Best Researcher Award

China university of mining and Technology, China 

Profile 

Scopus 

Early Academic Pursuits 🎓

Li Tao began his academic journey with a Bachelor’s degree from Sun Yat-sen University, where he cultivated a strong foundation in engineering principles. His undergraduate studies laid the groundwork for his future research endeavors, emphasizing a rigorous approach to problem-solving and a commitment to scientific inquiry.

In 2010, Li Tao embarked on his doctoral studies at Dalian University of Technology under the supervision of Professor Chui-jie Wu. His research during this period focused on advancing the understanding of combustion and detonation phenomena, setting the stage for his future work in microscale detonation technologies. His PhD work not only showcased his ability to tackle complex scientific problems but also demonstrated his dedication to pushing the boundaries of engineering knowledge.

Professional Endeavors 🛠️

Upon completing his PhD in 2016, Li Tao transitioned into a role as an Assistant Professor at Dalian University of Technology. This role marked the beginning of his contributions to the field of safety engineering and advanced combustion technologies. His work during this period involved both teaching and research, allowing him to disseminate his knowledge and contribute to the academic community.

In 2018, Li Tao joined the Guangzhou Institute of Energy Conversion as an Assistant Professor. This position provided him with a platform to further his research in energy conversion technologies, including microscale detonation. His work at this institute was marked by significant advancements in understanding flame acceleration and initiation mechanisms, particularly within curved tubes.

Since January 2024, Li Tao has been serving as an Associate Professor at the School of Safety Engineering, China University of Mining and Technology. This role has allowed him to continue his pioneering research while mentoring the next generation of engineers and scientists.

Contributions and Research Focus 🔬

Li Tao’s research focuses on addressing power and efficiency limitations in micro gas turbines through the advancement of microscale detonation technologies. His work has been pivotal in developing a novel technology route based on microscale detonation, which leverages curved tubes to enhance flame acceleration and initiation. This approach has led to several groundbreaking developments:

  • Novel Technology Route: Li Tao proposed a unique technology route involving microscale detonation with curved tubes, which has demonstrated significant improvements in flame acceleration and initiation. His research highlights how curved channels can influence detonation processes and improve performance.
  • Predictive Models: Through experimental measurements and direct numerical simulations, Li Tao developed predictive models for detonation distance and velocity deficits in curved tubes. These models have been instrumental in understanding and optimizing detonation processes.
  • Theoretical Analysis: His theoretical work elucidates the interaction mechanisms between pressure waves and flames during the high-speed flame phase. This analysis has provided valuable insights into the dynamics of flame behavior within curved tubes.
  • Micro Helical Detonation Chamber: Li Tao introduced a “micro helical detonation chamber + Tesla turbine” technology route to address challenges in micro-scale power systems. This innovative approach resulted in the development of an experimental prototype with potential solutions for issues such as low power output and high heat loss.

Accolades and Recognition 🏅

Li Tao’s contributions to the field have been recognized through various accolades and professional achievements. His innovative research and development efforts have earned him a reputation as a leading expert in microscale detonation technologies. His work has been published in prestigious journals, and he has been invited to present at numerous conferences and seminars, reflecting the impact and recognition of his research within the academic and professional communities.

Impact and Influence 🌟

Li Tao’s research has had a profound impact on the field of microscale combustion and energy conversion. His advancements in detonation technologies have the potential to revolutionize micro gas turbines, addressing critical issues related to power output, heat loss, and component performance. The successful development of his experimental prototype highlights the practical applications and potential of his research in real-world scenarios.

His work not only contributes to scientific knowledge but also influences the design and optimization of micro-scale power systems, which are crucial for various industrial and technological applications. Li Tao’s research has paved the way for further advancements in this field, establishing him as a key figure in the ongoing development of energy conversion technologies.

Legacy and Future Contributions 🔮

Li Tao’s legacy in the field of safety engineering and microscale detonation technologies is characterized by his innovative approach and commitment to solving complex engineering challenges. His research has set new standards for understanding and optimizing combustion processes, and his contributions will continue to influence future developments in micro gas turbines and energy systems.

Looking ahead, Li Tao is poised to make further contributions to the field through continued research and development. His focus on addressing the limitations of micro-scale power systems and exploring new technological routes will likely lead to additional breakthroughs and advancements. As he continues to push the boundaries of engineering knowledge, Li Tao’s work will remain a source of inspiration and progress in the field of microscale combustion technologies.

Notable Publications

Time-series prediction of settlement deformation in shallow buried tunnels based on EMD-SSA-GRNN model

Authors: Li, T., Shu, J., Chang, D.

Journal: Scientific Reports

Year: 2024

Wave propagation characteristics of fluid-containing soil granular materials at different frequencies under multiple dissipation mechanisms: A case study on calcareous sand in the South China Sea

Authors: Li, T., Shu, J., Li, Y., Huang, J., Galindo, R.

Journal: Computers and Geotechnics

Year: 2024

Automated method for structural modal identification based on multivariate variational mode decomposition and its applications in damage characteristics of subway tunnels

Authors: Li, T., Hou, R., Zheng, K., Zhang, Z., Liu, B.

Journal: Engineering Failure Analysis

Year: 2024

Propagation characteristics of dynamic wave in fluid-containing granular materials at unified high and low frequency

Authors: Li, T., Shu, J., Li, Y., Wu, B., Galindo, R.

Journal: Soil Dynamics and Earthquake Engineering

Year: 2024

Analytical Solution for Pipeline Settlement Law Using Shield Tunnel Excavation Underneath Based on Vlasov-Timoshenko Model Considering Lateral Soil Action

Authors: Li, T., Zheng, K., Peng, H., Zhang, Z., Liu, B.

Journal: International Journal of Geomechanics

Year: 2024

Assoc Prof Dr. Puneeta Ajmera | Decision-making and Problem-solving | Best Researcher Award

Assoc Prof Dr. Puneeta Ajmera | Decision-making and Problem-solving | Best Researcher Award

Delhi Pharmaceutical Sciences & Research University, Govt. of NCT of Delhi, India 

Profile 

Google Scholar

Early Academic Pursuits 📚

Dr. Prajith A. embarked on his academic journey with a Bachelor’s degree in Geology from Kannur University, Kerala, India, which laid the foundation for his deep-seated interest in marine sciences. Building on this solid base, he pursued a Master’s degree in Geology from the same university. His exceptional academic performance earned him a prestigious Junior Research Fellowship from CSIR-UGC, leading him to a Ph.D. in Marine Science at CSIR-National Institute of Oceanography, Goa University. During his doctoral studies, Dr. Prajith developed a strong research focus on sedimentology, paleoceanography, and paleoclimate, which would shape his future contributions to earth sciences.

Professional Endeavors 🌍

Dr. Prajith A.’s career is marked by a commitment to exploring and understanding the complex processes of marine and polar environments. He began his professional journey as a Junior Research Fellow at CSIR-National Institute of Oceanography, Goa, where he honed his skills in marine geology and oceanography. This was followed by his role as a Project Fellow at Mangalore University, where he further deepened his expertise in marine geology.

In 2013, Dr. Prajith joined CSIR-National Institute of Oceanography as a Senior Research Fellow, working on various projects related to marine sedimentology and paleoceanography. His notable contributions during this period led to his appointment as a Project Scientist at the National Centre for Polar and Ocean Research, Goa, where he continued to build his reputation as a leading marine scientist.

Since 2021, Dr. Prajith has served as a Scientist B and later Scientist C at the National Centre for Earth Science Studies in Thiruvananthapuram. His role involves leading scientific cruises and fieldwork, contributing to significant research projects like the study of the exclusive economic zone of India and hydrothermal exploration in the Indian Ocean Ridge.

Contributions and Research Focus 🔬

Dr. Prajith A.’s research is distinguished by its focus on sedimentology, paleoceanography, paleoclimate, and the exploration of hydrothermal sulphide minerals. His work has significantly advanced the understanding of sediment sources, diagenesis, and geochemistry in various marine environments. Notable research includes his studies on the influences of monsoon variations on terrigenous influx and bioproductivity in the Bay of Bengal, and his geochemical investigations of core sediments which provide insights into weathering and early diagenetic changes.

His shipborne experience, including leading and participating in multiple scientific cruises, underscores his practical expertise and leadership in marine research. Dr. Prajith has been involved in 11 scientific cruises, with leadership roles in several, including geological sampling and hydrothermal exploration missions.

Accolades and Recognition 🏆

Dr. Prajith A.’s exceptional contributions to earth sciences have been recognized through various awards and accolades. He received the CSIR-UGC Junior Research Fellowship in Earth, Atmospheric, Ocean, and Planetary Sciences in December 2010 and the CSIR-UGC National Eligibility Test (NET) lectureship in December 2008. His achievements reflect his dedication and excellence in his field.

Impact and Influence 🌟

Dr. Prajith’s research has had a profound impact on the understanding of marine sedimentology and paleoceanography. His studies have provided valuable insights into the geochemical and isotopic processes governing volcanic activities, rare earth element sources, and sediment weathering. His work has influenced scientific perspectives on environmental magnetism and hydrothermal systems, contributing to the broader field of marine and earth sciences.

Legacy and Future Contributions 🔮

Looking ahead, Dr. Prajith A. is poised to continue making significant contributions to the field of marine science. His ongoing research endeavors and leadership in scientific expeditions are expected to yield further advancements in understanding marine sediment processes and paleoceanographic changes. Dr. Prajith’s legacy will likely be defined by his pioneering work in exploring and analyzing complex marine environments, influencing future research directions and methodologies in earth sciences. His commitment to excellence and exploration will inspire future generations of scientists in the quest to unravel the mysteries of our planet’s oceans and sediments.

Publications 

Modelling the barriers of Health 4.0–the fourth healthcare industrial revolution in India by TISM

    • Authors: Puneeta Ajmera, Vineet Jain
    • Journal: Operations Management Research
    • Year: 2019

Modelling the enablers of industry 4.0 in the Indian manufacturing industry

    • Authors: Vineet Jain, Puneeta Ajmera
    • Journal: International Journal of Productivity and Performance Management
    • Year: 2021

Ranking the strategies for Indian medical tourism sector through the integration of SWOT analysis and TOPSIS method

    • Author: Puneeta Ajmera
    • Journal: International Journal of Health Care Quality Assurance
    • Year: 2017

Modelling the factors affecting Indian medical tourism sector using interpretive structural modeling

    • Authors: Vineet Jain, Puneeta Ajmera
    • Journal: Benchmarking: An International Journal
    • Year: 2018

A fuzzy interpretive structural modeling approach for evaluating the factors affecting lean implementation in Indian healthcare industry

    • Authors: Puneeta Ajmera, Vineet Jain
    • Journal: International Journal of Lean Six Sigma
    • Year: 2020

Dr. Ignacio Amat Santos | Innovative Leadership | Best Researcher Award

Dr. Ignacio Amat Santos | Innovative Leadership | Best Researcher Award

University Clinic Hospital of Valladolid, Spain

Profile 

Orcid 

📚Early Academic Pursuits 

Dr. Ignacio J. Amat-Santos embarked on his medical journey with a strong foundation in cardiology and statistical research. He completed his cardiology training at the University Clinical Hospital of Valladolid in Spain, a prestigious institution known for its rigorous medical programs. During his training, he further enriched his expertise with an external stay at Klinikum Großhadern in Munich, Germany, where he gained invaluable international experience in advanced cardiac care.

Recognizing the importance of a multidisciplinary approach in medical research, Dr. Amat-Santos pursued a degree in statistics applied to biosanitary research from the Autonoma University in Barcelona, Spain. This unique combination of clinical and statistical expertise laid the groundwork for his future contributions to cardiology and medical research.

🏥Professional Endeavors 

Dr. Amat-Santos’ professional journey is marked by extensive training and practical experience in interventional cardiology. He honed his skills at the Quebec Heart & Lung Institute in Canada, one of the leading centers for cardiac care. His quest for excellence in clinical research led him to the Instituto de Salud Carlos III in Madrid, Spain, where he secured the competitive “Rio Hortega” contract. This opportunity allowed him to delve deeply into clinical research, culminating in his PhD, which was awarded the first national prize, a testament to his exceptional academic and research capabilities.

Currently, Dr. Amat-Santos serves as the Director of the Interventional Cardiology Department at the University Clinical Hospital of Valladolid, one of Spain’s largest and most renowned hospitals. In this role, he oversees a team of skilled professionals, ensuring the highest standards of cardiac care for patients.

🔬Contributions and Research Focus 

Dr. Amat-Santos has made significant contributions to the field of cardiology, particularly in the area of structural cardiac interventions. He is recognized as a key opinion leader in this domain, serving as a proctor for Transcatheter Aortic Valve Implantation (TAVI) as well as for tricuspid and mitral therapies. His expertise extends to complex coronary cases, where he acts as a proctor for chronic total occlusions.

Throughout his career, Dr. Amat-Santos has been the principal investigator in over 100 studies and has authored more than 300 scientific articles. His research has been published in prestigious journals such as The Lancet, New England Journal of Medicine, JACC Cardiovascular Interventions, and EuroIntervention. Some of his notable publications include:

  1. Baumbach A, van Royen N, Amat-Santos IJ, et al. “LANDMARK comparison of early outcomes of newer-generation Myval transcatheter heart valve series with contemporary valves (Sapien and Evolut) in real-world individuals with severe symptomatic native aortic stenosis: a randomised non-inferiority trial.” The Lancet. 2024.
  2. Biscaglia S, Guiducci V, Escaned J, et al; FIRE Trial Investigators. “Complete or Culprit-Only PCI in Older Patients with Myocardial Infarction.” N Engl J Med. 2023.
  3. Amat-Santos IJ, Estevez-Loureiro R, Sánchez-Recalde Á, et al. “Right heart remodelling after bicaval TricValve implantation in patients with severe tricuspid regurgitation.” EuroIntervention. 2023.

🏅Accolades and Recognition 

Dr. Amat-Santos’ excellence in cardiology and research has been recognized through numerous accolades and awards. His PhD was awarded the first national prize, highlighting his outstanding research contributions. He is frequently invited to speak at international conferences and serves as an editor and author of several influential books in the field of cardiology.

His role as a professor of medicine at the University of Valladolid allows him to shape the next generation of cardiologists and researchers. He supervises several PhD projects, guiding students through their academic and research endeavors.

🌍Impact and Influence 

Dr. Amat-Santos’ impact on the field of cardiology extends beyond his clinical and research contributions. As a proctor for TAVI and other structural cardiac interventions, he plays a crucial role in training and mentoring other cardiologists worldwide. His expertise in complex coronary cases has led to advancements in the treatment of chronic total occlusions, improving patient outcomes.

His extensive publication record and involvement in over 100 studies demonstrate his commitment to advancing medical knowledge and improving patient care. His work on prosthetic valve endocarditis, commissural alignment in TAVR, and other critical areas of cardiology has influenced clinical practices and guidelines.

🌟Legacy and Future Contributions 

Dr. Amat-Santos’ legacy is characterized by his dedication to advancing the field of cardiology through research, education, and clinical practice. His contributions have significantly impacted the treatment of structural heart diseases and complex coronary conditions. As he continues to lead the Interventional Cardiology Department at the University Clinical Hospital of Valladolid, his influence on the field is poised to grow.

Looking ahead, Dr. Amat-Santos is likely to continue making groundbreaking contributions to cardiology. His ongoing research, mentorship of young cardiologists, and leadership in clinical practice ensure that his impact will be felt for years to come. His commitment to excellence and innovation in cardiology sets a high standard for future generations, cementing his legacy as a pioneer in the field.

Publications 

  1. ESTUDIO DE FLUJO AÓRTICO TRAS IMPLANTE DE PRÓTESIS DE VÁLVULA AÓRTICA TRANSCATÉTER EN FUNCIÓN DE LA ORIENTACIÓN DE LA PRÓTESIS. DISEÑO Y VALIDACIÓN DE SIMULACIÓN COMPUTACIONAL
  • Duration: 2024-01 to 2025-12
  • Granting Agency: Instituto de Salud Carlos III (Valladolid, ES)
  • Grant Number: DTS23/00127
  • Authors: TBD
  • Journal: TBD
  • Year: 2024

2. Implante de prótesis aórtica transcatéter para el tratamiento de prótesis mecánica aórtica disfuncionante: Estudio translacional de prueba de concepto. (TAMEC Study)

  • Duration: 2024-01 to 2024-12
  • Granting Agency: GERENCIA REGIONAL DE SALUD DE CASTILLA Y LEON (Valladolid, ES)
  • Grant Number: GRS 2917/A1/2023
  • Authors: TBD
  • Year: 2024

3. Estudio COMPLETE-2. Ensayo aleatorizado de estrategias de revascularización completa de lesiones no culpables guiadas por fisiología frente a estrategias de revascularización completa de lesiones no culpables guiadas por angiografía en pacientes con infarto agudo de miocardio y enfermedad coronaria multivaso

  • Duration: 2024 to present
  • Granting Agency: Canadian Institutes of Health Research y Abbott Medical Canada Co. (., CA)
  • Grant Number: NCT05701358
  • Authors: TBD
  • Journal: TBD
  • Year: 2024

4. Estudio COPERNICAN. REDUCED STENT STRATEGY VERSUS CONVENTIONAL PERCUTANEOUS CORONARY REVASCULARIZATION IN PATIENTS PRESENTING WITH ST-SEGMENT ELEVATION MYOCARDIAL INFARCTION

  • Duration: 2024 to present
  • Granting Agency: Fundación para la Investigación del Hospital Universitari La Fe (Valencia, ES)
  • Grant Number: NCT06353594
  • Authors: TBD
  • Journal: TBD
  • Year: 2024

5. Estudio CROSS. Registro prospectivo de la disrupcion de guías y microcatéteres coronarios en la ICP de lesiones crónicas totales ocluidas: El ESTUDIO CROSS

  • Duration: 2024 to present
  • Granting Agency: ICICOR (., ES)
  • Grant Number: NCT06353594
  • Authors: TBD

Prof. Sujuan Hu | Innovative Leadership | Best Innovation Award

Prof. Sujuan Hu | Innovative Leadership | Best Innovation Award

Kunming University, China

Profile 

Google Scholar 

🎓Early Academic Pursuits 

Sujuan Hu was born on August 25, 1987, and is a Chinese national. She embarked on her academic journey at Huazhong University of Science and Technology, where she pursued and successfully obtained her Ph.D. under the mentorship of Professor Bo Chi. This formative period from December 2012 to September 2015 laid a strong foundation for her future endeavors in the fields of chemical engineering and material science. Her doctoral studies were marked by a deep dive into the principles and applications of advanced battery technologies and photoelectrochemical systems.

💼Professional Endeavors 

Sujuan Hu currently serves as a key faculty member at Kunming University, where she engages in teaching and research. Her professional journey is characterized by a commitment to exploring innovative solutions in energy storage and conversion. Her work primarily focuses on the development of high-performance batteries and photoelectrochemical cells, aiming to address critical challenges in sustainable energy. This focus is evident in her numerous publications in high-impact journals and her active involvement in leading research projects.

🔬Contributions and Research Focus 

Dr. Hu’s research contributions are substantial and multifaceted, particularly in the realm of silicon-air batteries and photo-assisted zinc-air batteries. Her work encompasses a range of topics including the synthesis of novel electrocatalysts, the development of advanced battery materials, and the investigation of photoelectrochemical properties. Some of her notable publications include:

  1. Silicon-Air Batteries: An in-depth review published in Coordination Chemistry Reviews discusses the principles, current state, and future perspectives of silicon-air batteries. This work has garnered significant attention in the field, underscoring its impact on future energy storage technologies.
  2. Photo-Assisted Zinc-Air Batteries: Her research on flexible rechargeable photo-assisted zinc-air batteries, published in Energy Storage Materials, highlights the innovative use of photo-active bifunctional oxygen electrocatalysts. This work exemplifies her expertise in integrating photoactive materials with energy storage systems.
  3. Semiconductor Applications: Dr. Hu has extensively explored the use of semiconductor materials in various battery systems. Her publications in prestigious journals such as Chemical Engineering Journal and Chinese Chemical Letters detail the development of semiconductor-based electrocatalysts for enhanced battery performance and environmental sensing.

🏆Accolades and Recognition 

Dr. Sujuan Hu’s exemplary work has earned her numerous accolades, reflecting her prominence in the scientific community. Notably, she received the Yunnan Province Natural Science Award in 2022, a testament to her significant contributions to natural sciences. In 2018, she was recognized as part of the “Thousand Talents Program” of Yunnan Province for Young Talents, highlighting her potential and achievements as a young scientist.

🌍Impact and Influence 

Dr. Hu’s research has had a profound impact on the field of energy storage and conversion. Her innovative approaches to battery technology and photoelectrochemical systems have paved the way for advancements in sustainable energy solutions. Her work on silicon-air and zinc-air batteries, in particular, has the potential to revolutionize the way energy is stored and utilized, offering more efficient and environmentally friendly alternatives to conventional battery systems.

🌟Legacy and Future Contributions 

Looking ahead, Dr. Sujuan Hu is poised to continue her influential work in energy storage and photoelectrochemical systems. Her ongoing research aims to further explore the integration of novel materials and technologies to enhance the efficiency and performance of energy storage devices. As a leading figure in her field, she is expected to contribute significantly to the development of next-generation energy solutions, ensuring a lasting legacy of innovation and sustainability.

Publications 

Two-dimensional TiO2 (001) nanosheets as an effective photo-assisted recyclable sensor for the electrochemical detection of bisphenol A

  • Authors: Sujuan Hu, Yingjian Yu, Yu Guan, Yanhuan Li, Baoling Wang, Mingshan Zhu
  • Journal: Chinese Chemical Letters
  • Year: 2020

Ultrathin two-dimensional semiconductors for photocatalysis in energy and environment applications

  • Authors: Sujuan Hu, Mingshan Zhu
  • Journal: ChemCatChem
  • Year: 2019

Novel heterojunction photocatalysts based on lanthanum titanate nanosheets and indium oxide nanoparticles with enhanced photocatalytic hydrogen production activity

  • Authors: Sujuan Hu, Bo Chi, Jian Pu, Li Jian
  • Journal: Journal of Materials Chemistry A
  • Year: 2014

2D/1D heterostructure of g-C3N4 nanosheets/CdS nanowires as effective photo-activated support for photoelectrocatalytic oxidation of methanol

  • Authors: Jiayue Hu, Chaokai Yu, Chunyang Zhai, Sujuan Hu, Yuan Wang, Nianqing Fu, Lixi Zeng, Mingshan Zhu
  • Journal: Catalysis Today
  • Year: 2018

Visible light driven (Fe, Cr)-codoped La2Ti2O7 photocatalyst for efficient photocatalytic hydrogen production

  • Authors: Sujuan Hu, Lichao Jia, Bo Chi, Jian Pu, Li Jian
  • Journal: Journal of Power Sources
  • Year: 2014