Prof Jinn P. Chu | Innovative Leadership | Best Researcher Award

Prof Jinn P. Chu | Innovative Leadership | Best Researcher Award

National Taiwan University of Science and Technology, Taiwan 

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🎓 Early Academic Pursuits

Jinn P. Chu embarked on his academic journey with a profound interest in materials science and engineering, a field that combines the complexity of physics, chemistry, and engineering to develop advanced materials. He earned his Ph.D. in Materials Science and Engineering from the University of Illinois at Urbana-Champaign (UIUC) between August 1988 and May 1992—one of the premier institutions for this discipline. His doctoral training at UIUC, surrounded by globally renowned researchers and access to cutting-edge laboratories, laid a solid foundation for a lifetime of scientific inquiry and innovation. This formative period not only shaped his technical acumen but also instilled in him a global outlook on research and its applications.

🧑‍🔬 Professional Endeavors

Prof. Chu’s professional trajectory is a testament to his dedication, vision, and leadership in both academic and administrative roles. He began his professorial career at the National Taiwan Ocean University in 1993, where he served for over a decade as Associate Professor, Professor, and eventually Chairman of the Institute of Materials Engineering. In 2007, he transitioned to the National Taiwan University of Science and Technology (Taiwan Tech), where he would leave an indelible mark. Rising through the ranks, he became Professor, Distinguished Professor, and currently serves as a Chair Professor since 2022.

His administrative leadership is equally noteworthy. From 2018 to 2021, he served as Vice President of Taiwan Tech, guiding strategic planning and research development. He also held significant roles as Dean and Vice Dean of the Office of Research and Development, and Vice Dean of the College of Engineering. Additionally, Prof. Chu directed the Applied Research Center for Thin-Film Metallic Glass, a pivotal unit fostering innovation in advanced materials.

🔬 Contributions and Research Focus

Jinn P. Chu has made pioneering contributions in the field of thin-film metallic glasses, nanostructured coatings, and advanced materials for medical, environmental, and industrial applications. His interdisciplinary research integrates materials science with engineering design to solve real-world challenges. His work on metallic glass nanotube arrays and nano-structured stainless-steel coatings is globally recognized, influencing the development of next-generation separation membranes and medical devices.

He is an inventor with over 50 patents, including breakthroughs such as thin-film metallic glass coated medical needles, tattoo needles, and diaphragms reinforced with metallic coatings. These innovations not only advance science but also demonstrate his commitment to translating lab results into practical tools that benefit society.

His scholarly impact is amplified by a number of high-impact publications in leading journals such as Nature Materials, npj Clean Water, and Materials Today. These papers have garnered significant citations, reflecting his work’s resonance with the global scientific community.

🏆 Accolades and Recognition

Prof. Chu’s illustrious career has been decorated with numerous national and international awards. He has been consistently ranked in the Top 2% of Scientists Worldwide (2021–2023) by Stanford University, acknowledging both his lifetime scientific impact and annual influence. Among his many accolades are the Outstanding Research Award from Taiwan’s Ministry of Science and Technology (2021), the Taipei Tech Distinguished Alumni Award (2021), and two-time National Innovation Awards in 2017 and 2019.

His ingenuity was also recognized globally when he received two silver medals at the Concours Lépine International in Paris in 2018 and an ACS Award at Japan Nano Tech the same year. These honors validate his international stature in materials innovation.

His service to the scientific community is equally commendable. He served as President of the Taiwan Association for Coatings and Thin Films Technology (TACT) and is currently Vice President of the Materials Research Society-Taiwan (MRS-T). His editorial work includes roles as Associate Editor of the AVS Journal of Vacuum Science and Technology, and Editorial Board Member of Thin Solid Films.

🌏 Impact and Influence

Jinn P. Chu has had an enormous influence on both academic research and industry collaboration. He has played key roles in major projects with international and national corporations, such as Foxlink Precision Industry, Dupont Taiwan, and Sino MG Technology, and has participated in EU research initiatives like the nanoCOOL project under FP7. His efforts have bridged the gap between fundamental research and industrial application, reinforcing the relevance of academic expertise in real-world innovation.

Moreover, his impact extends through his mentorship. As a professor and former administrator, he has shaped the careers of numerous students, postdocs, and junior researchers. His work ethic, integrity, and passion have left a lasting impression on Taiwan’s materials science landscape and beyond.

🌟 Legacy and Future Contributions

As he continues his tenure as a Chair Professor at Taiwan Tech, Prof. Chu remains a beacon of inspiration in his field. His legacy is built not only on his technical achievements but also on his role as a visionary leader, innovative researcher, and dedicated educator. Looking ahead, he is poised to expand his work on nanostructured functional coatings, sustainable materials, and biomedical applications, shaping the next chapter in materials engineering.

With his eyes firmly set on solving emerging global challenges—be it in healthcare, sustainability, or advanced manufacturing—Prof. Jinn P. Chu stands as a paragon of scientific excellence whose work will continue to influence generations of researchers and innovators. 🚀

Mechanisms of deodorizing rapeseed oil with ethanol steam at a low temperature: A focus on free fatty acids, tocopherols, and phytosterols

Authors: Dong, Yiyang; Liu, Fangrong; Li, Wenlin; Wang, Chengming
Journal: Food Chemistry
Year: 2025

 Bleaching of Idesia polycarpa Maxim. Oil Using a Metal-Organic Framework-Based Adsorbent: Kinetics and Adsorption Isotherms

Authors: Dong, Yiyang; Wang, Chengming; Liu, Fangrong; Niu, Aifeng
Journal: Foods
Year: 2025

Assoc Prof Dr. Shaohua Wu | Innovative Leadership | Best Researcher Award

Assoc Prof Dr. Shaohua Wu | Innovative Leadership | Best Researcher Award

Dalian University of Technology, China

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🎓 Early Academic Pursuits

Shaohua Wu began his academic journey at Tianjin University, where he earned a B.S. in Thermal Energy and Dynamic Engineering (2007-2011) and later completed an M.A. in Power Machinery and Engineering (2011-2013). His early academic foundation laid the groundwork for his deep engagement with energy systems and thermodynamics. His education was marked by honors, such as receiving the Best Master Thesis Award in 2014.

Wu further pursued a Ph.D. at the National University of Singapore (NUS) (2015-2018), under the supervision of Prof. Wenming Yang, with a joint doctoral training at the University of Cambridge (2016-2018) under Prof. Markus Kraft and Dr. Jethro Akroyd. This dual-institution experience provided him with a solid interdisciplinary foundation in mechanical and chemical engineering.

💼 Professional Endeavors

Shaohua Wu has held various academic positions, starting as a Research Associate at Cambridge CARES (2018-2019) before becoming a Research Fellow at NUS (2019-2020). In 2021, he took on the role of Associate Professor at Dalian University of Technology, where he currently leads the Multiphase Flow Group as a principal investigator. His leadership in this role has allowed him to mentor over 10 researchers, contributing to high-fidelity numerical algorithms and AI-driven multiscale simulations for propulsion and power systems.

🔬 Contributions and Research Focus

Wu’s research spans first-principles-based modeling and simulation of reactive flows, including combustion, multiphase flows, and their multiscale interactions. He specializes in Computational Fluid Dynamics (CFD) and population balance modeling (PBM), and has integrated machine learning algorithms into these fields for predictive and computational efficiency. Some of his key research topics include:

Multiphase systems in propulsion and power generation (reciprocating engines, gas turbines).
AI-driven multivariate PBM for predicting particle behavior.
Chemical kinetics simulation using AI for mechanism construction and reduction.

🌍 Impact and Influence

Shaohua Wu’s work has had a significant impact on the fields of combustion, particle dynamics, and energy system optimization. His development of next-generation simulation software, such as the Kinetics & SRM Engine Suite, has been used for optimizing internal combustion engines and reactors. He has also contributed to soot particle modeling and reduction technologies that help lower emissions in various energy sectors. With numerous patents, his innovations extend to real-world applications, such as vehicle exhaust purification devices and ABS braking systems for motorcycles.

📖 Academic Citations

Shaohua Wu’s work has been widely recognized and cited in leading journals, including Journal of Aerosol Science, Energy and AI, Applied Energy, and Chemical Engineering Science. His contributions to reactive flow simulations, particle dynamics, and CFD have earned him a notable presence in the academic community, particularly through high-impact publications and as a reviewer for prestigious journals.

💻 Technical Skills

Wu is highly proficient in a range of programming languages (Fortran, C/C++, Python, MATLAB) and commercial/open-source software (ANSYS Fluent, OpenFOAM, CHEMKIN, KIVA). His expertise extends to mathematics and statistical algorithms for CFD, machine learning, and optimization, with experience in:

Deep learning algorithms (CNN, RNN, GAN, GNN, PINN)
CFD-related algorithms (Finite Volume Method, Multigrid method, SIMPLE algorithm)
Optimization algorithms (Genetic Algorithm, Particle Swarm Optimization)

🎓 Teaching Experience

With over six years of teaching, Shaohua Wu has lectured extensively at the Dalian University of Technology, focusing on courses such as Engineering Thermodynamics, Computational Fluid Dynamics (CFD), and Big Data and Machine Learning in Energy. His dedication to teaching has earned him excellent student ratings. He also taught and assisted courses at NUS, such as Heat and Mass Transfer and Numerical Algorithms for Scientific Computing.

🏆 Legacy and Future Contributions

Shaohua Wu has made substantial strides in particle dynamics, population balance modeling, and the AI-driven simulation of reactive flows, contributing to both academic and industrial advancements. His future work aims to integrate AI with CFD to develop smarter, more efficient energy and propulsion systems, focusing on energy sustainability. Wu’s efforts in deep learning-based chemical kinetics could revolutionize fuel modeling and lead to cleaner combustion technologies.

With his current projects, including research on soot particle dynamics and deep learning-driven solvers, Shaohua Wu is poised to make lasting contributions to energy research, helping drive the development of more sustainable energy technologies.

📝Notable Publications

Selective catalytic reduction of nitric oxide with ammonia over zirconium-doped copper/ZSM-5 catalysts

Authors: F Bin, C Song, G Lv, J Song, S Wu, X Li
Journal: Applied Catalysis B: Environmental
Volume: 150
Pages: 532-543
Year: 2014

Extension of moment projection method to the fragmentation process

Authors: S Wu, EKY Yapp, J Akroyd, S Mosbach, R Xu, W Yang, M Kraft
Journal: Journal of Computational Physics
Volume: 335
Pages: 516-534
Year: 2017

Three-dimensional MP-PIC simulation of the steam gasification of biomass in a spouted bed gasifier

Authors: S Yang, F Fan, Y Wei, J Hu, H Wang, S Wu
Journal: Energy Conversion and Management
Volume: 210
Pages: 112689
Year: 2020

A moment projection method for population balance dynamics with a shrinkage term

Authors: S Wu, EKY Yapp, J Akroyd, S Mosbach, R Xu, W Yang, M Kraft
Journal: Journal of Computational Physics
Volume: 330
Pages: 960-980
Year: 2017

Numerical study on the effective utilization of high sulfur petroleum coke for syngas production via chemical looping gasification

Authors: Z Li, H Xu, W Yang, S Wu
Journal: Energy
Volume: 235
Pages: 121395
Year: 2021

Dr. Susanne Kumpulainen | Innovative Leadership | Best Researcher Award

Dr. Susanne Kumpulainen | Innovative Leadership | Best Researcher Award

South-Eastern Finland University of Applied Sciences, Finland

🔗 Professional Profiles

🌍 Summary:

Susanne Kumpulainen is a dedicated RDI Specialist and Team Lead at South-Eastern Finland University of Applied Sciences, focusing on Planetary Health and Brain research. Her expertise lies in neurophysiological adaptations, brain neurofeedback innovations, and the wellbeing effects of nature-based interventions.

🎓 Education:

Susanne holds a Doctor of Sport Science, specializing in neurophysiological adaptations of the brain and body. She conducted pioneering research at the University of Jyväskylä and pursued postdoctoral studies at Polar Electro Oy.

💼 Professional Experience:

With over six years at Xamk, Susanne has led the development of validated lab procedures and innovative digital nature ecosystems. She collaborates extensively, aiming to expand research on environmental factors and neurological health.

🔬 Research Interests:

Susanne’s current initiatives explore the intersection of environmental factors and neurological health under the ‘Planetary Health and Brain’ framework.

Publication Top Noted

Assessing the well-being benefits of VR nature experiences on group: Heart rate variability insights from a cross-over study

    • Authors: Susanne Kumpulainen, Samad Esmaeilzadeh, Arto J. Pesola
    • Journal: Journal of Environmental Psychology
    • Volume: 2024
    • Issue: 8
    • Pages: (Not specified)
    • Year: 2024
    • DOI: 10.1016/j.jenvp.2024.102366

Enhancing Psychophysiological Well-Being through Nature-based Soundscapes: An Examination of Heart Rate Variability in a Cross-Over Study

    • Authors: Susanne Kumpulainen, Samad Esmaeilzadeh, Markus Pesonen, Catarina Brazão, Arto J. Pesola
    • Journal: Preprint (not yet published in a journal at the time of preprint)
    • Date: 2024-01-16
    • DOI: 10.31234/osf.io/zpfq3

Dr. Claire Depardieu-Innovative leadership – Excellence in Research 

Dr. Claire Depardieu-Innovative leadership - Excellence in Research 

Université Laval-Canada

Author profile 

Early Academic Pursuits

Dr. Claire Depardieu's academic journey has been marked by a passion for plant physiology, bioinformatics, genomics, environmental sciences, and agronomy. She holds a Master's degree in Forestry, Agronomy, and Environmental Sciences from the University of Nancy, France, and a Ph.D. in Plant Physiology from the University of Franche-Comté, France. During her Ph.D., she extensively studied the response of sessile and pedunculate oaks to waterlogging, focusing on the expression of aquaporins and their potential role in root water transport.

Professional Endeavors

Following her academic pursuits, Dr. Depardieu embarked on three postdoctoral research programs, delving into bioinformatics and genomics at the University of Toronto, agronomy at Université Laval, and forest genomics at Université Laval. Her research contributions include 18 scientific articles in peer-reviewed journals, with six more manuscripts in preparation or submission. She has actively represented her research groups at international conferences in Europe, the United States, and Canada.

Contributions and Research Focus

Dr. Depardieu's research interests revolve around plant acclimatization and adaptation to climate change, with a specific focus on understanding the physiological and molecular processes involved in abiotic stress tolerance. Specialized in plant ecophysiology and functional genomics, she has significantly contributed to unraveling the genetic and physiological basis of drought adaptation in conifers.

Accolades and Recognition

Throughout her career, Dr. Depardieu has earned accolades and recognition for her outstanding contributions. Notably, she received the second prize for the best post-doctoral presentation at the CFGA national colloquium in 2021 and secured the cover page feature for her scientific publication in Molecular Ecology. Her involvement with the International Student Network for Climate UniC highlights her commitment to climate change research and leadership in the scientific community.

Impact and Influence on innovative leadership 

As an attached researcher in forest genomics at Université Laval and Natural Resources Canada, Dr. Depardieu has played a crucial role in coordinating and contributing to research projects. Notable projects include FastTRAC II and Spruce-Up, where she led activities related to genomic relations, growth, climate sensitivity, and coordination of radio-isotope projects.

Dr. Claire Depardieu exemplifies innovative leadership in the field of plant sciences and genomics. Her ability to seamlessly integrate diverse expertise in plant physiology, bioinformatics, and agronomy showcases a holistic and forward-thinking approach to research. Driven by a passion for addressing critical challenges such as climate change, she consistently seeks novel perspectives and methodologies. As a coordinator for research projects like FastTRAC II and Spruce-Up, she has demonstrated leadership by fostering collaboration with external partners, developing cutting-edge research projects, and steering the teams towards achieving project objectives. Her innovative leadership is evident in the intersection of her scientific acumen, effective project coordination, and commitment to advancing knowledge in genomics and environmental sciences.

Legacy and Future Contributions

Dr. Depardieu's legacy lies in her multifaceted expertise encompassing plant physiology, genomics, and agronomy. Her research has contributed to advancing the understanding of tree adaptation to changing climates. As she continues to excel in her current roles and contributes to various projects, her future contributions are anticipated to further enrich the fields of forest genomics and climate adaptation.

This comprehensive overview underscores Dr. Claire Depardieu's remarkable academic and professional journey, her significant contributions to the scientific community, and the potential for continued impact in her field.

Moreover, Dr. Depardieu's involvement in the International Student Network for Climate UniC showcases her commitment to shaping the future of climate change research and education. By co-chairing the UniC2021 Summit and subsequently taking on roles in project coordination and scientific consultancy, she has displayed a visionary leadership style that extends beyond traditional academic boundaries. Her proactive engagement with international projects, including the design of an international research-action initiative in climate change, highlights her forward-thinking and innovative mindset. Dr. Depardieu's leadership is characterized by a dedication to pushing the boundaries of conventional research, fostering collaboration, and actively contributing to the global discourse on climate change and sustainable environmental practices.

Notable publications 

Stanislav Yankovsky Innovative leadership -Best Researcher Award 

Assist Prof Dr Stanislav Yankovsky-
Assist Prof Dr. Stanislav Yankovsky Innovative leadership -Best Researcher Award 

Tomsk Polytechnic University-Russia 

Author Profile 

Early Academic Pursuits

Yankovsky Stanislav Aleksandrovich, an accomplished academician and Associate Professor at the Tomsk Polytechnic University, Russia, was born on July 29, 1985. With a qualification in engineering and specialization in boiler and reactor engineering, he embarked on his academic journey, demonstrating a keen interest in energy-related fields.

Professional Endeavors

Yankovsky has accumulated 16 years of rich experience in academia and research. His journey began as an Engineer at the Department of Nuclear and Thermal Power Stations, Faculty of Thermal Energy, Tomsk Polytechnic University, from October 2008 to October 2011. He progressed to the role of Assistant at the same department, later renamed the Energy Institute, serving until June 2019. Currently, he holds the position of Associate Professor at the Engineering School of Energy, where he has been contributing since June 29, 2019.

In addition to his academic roles, Yankovsky has been a Scientific Employee at the Laboratory of Promising Materials of the Energy Industry since December 12, 2022. Notably, he is also the Director of "New Energy Systems and Consulting" since May 25, 2018, showcasing his leadership in shaping innovative energy solutions.

Contributions and Research Focus

Yankovsky's academic and research pursuits revolve around resource-saving, improving energy efficiency, renewable energy sources, hydrogen energy, carbon-neutral technologies, recycling, geothermal technologies, and tribotechnologies with a focus on technical carbon and bio-carbon. His diverse interests underscore his commitment to addressing critical challenges in the energy sector.

Accolades and Recognition

Throughout his career, Yankovsky has received numerous awards and recognition for his significant contributions to research and innovations. Unfortunately, the specific details of these accolades are not provided in the given information.

At the core of innovative leadership is the ability to envision and implement novel strategies that propel an organization forward. Such leaders are not afraid to challenge the status quo and disrupt conventional thinking. They foster a culture that embraces change as a catalyst for growth and encourage a willingness to learn from both successes and failures. By instilling a sense of purpose and a shared vision, innovative leaders inspire teams to collectively contribute to groundbreaking initiatives. Whether it's introducing cutting-edge technologies, streamlining processes, or fostering a climate of continuous learning, innovative leaders play a pivotal role in shaping the future trajectory of their organizations. Through their strategic vision, adaptability, and commitment to fostering innovation, these leaders leave a lasting impact on their teams and industries alike.

Impact and Influence

Yankovsky's impact is evident in his extensive project management experience, where he has been involved in projects such as the development of organizational and methodological bases for energy surveys and the updating of heat supply schemes. His leadership role as the Director of "New Energy Systems and Consulting" further emphasizes his influence in driving innovative solutions and consulting services in the energy sector.

Legacy and Future Contributions

Yankovsky's legacy lies in his multifaceted approach to energy-related research, project management, and leadership roles. His commitment to sustainability and innovation positions him as a key contributor to the evolution of energy systems. Looking ahead, his continued involvement in diverse research teams and projects, as well as his role as a director, suggests a future marked by ongoing contributions to the field of energy.

In summary, Yankovsky Stanislav Aleksandrovich's journey from early academic pursuits to his current position as an Associate Professor and Director reflects a commitment to advancing knowledge in the energy domain. His diverse expertise, leadership roles, and extensive project involvement highlight a legacy of impactful contributions and set the stage for future innovations in the dynamic field of energy research and technology.

Innovative leadership is a transformative approach that emphasizes forward-thinking, adaptability, and creativity in navigating complex challenges and driving organizational success. An innovative leader fosters a culture of continuous improvement and encourages team members to explore new ideas and solutions. This type of leadership goes beyond traditional methods, embracing a dynamic and agile mindset to stay ahead of industry trends and disruptions. Innovative leaders inspire and empower their teams, creating an environment where experimentation and calculated risk-taking are encouraged. They recognize the value of diversity and inclusivity, leveraging the unique perspectives of team members to spark innovation. These leaders actively seek out emerging technologies, trends, and opportunities, positioning their organizations to thrive in rapidly evolving landscapes.

Notable Publications