Prof Dr. Weiwei Wang | Team Building and Team Management

Prof Dr. Weiwei Wang | Team Building and Team Management

Academy of National Food and Strategic Reserves Administration, China

Author Profile

ORCID

🌱 Early Academic Pursuits

Dr. Weiwei Wang’s academic journey is a testament to her dedication to life sciences, particularly in agricultural and food-related biotechnology. Her roots in academia began at the China Agricultural University, where she earned her Bachelor of Agricultural Science (BAS) in 2006. It was here that she laid a strong foundation in biological sciences, nutrition, and agricultural technologies. Driven by a passion for further exploration in this field, she continued at the same institution, completing her Master’s degree (MS) by 2008.

Recognizing the importance of global exposure in the realm of scientific research, Dr. Wang pursued her Ph.D. at China Agricultural University from 2011 to 2014. As part of her doctoral journey, she had the invaluable opportunity to serve as a Ph.D. student intern at Texas A&M University in the United States between August 2012 and September 2013. This international academic experience enriched her research outlook, allowing her to work with globally recognized experts in food science and microbiology. Her studies during this phase sharpened her interests in probiotics, gut microbiota, and biotransformation—areas that would later define her research career.

🧪 Professional Endeavors

Following the completion of her advanced studies, Dr. Wang stepped into professional scientific research with great zeal. Her career began at the Institute of Animal Science under the Guangdong Academy of Agricultural Sciences, where she served as a Research Assistant from 2008 to 2011. Here, she honed her experimental techniques and developed a more applied understanding of animal nutrition and feed science.

In 2014, Dr. Wang transitioned into a more impactful role as an Assistant Researcher at the Academy of State Administration of Grain, which later evolved into the Academy of National Food and Strategic Reserves Administration (ANFSRA). From 2017 to 2023, she served as an Associate Researcher, and by December 2023, she was promoted to Researcher and Deputy Director at ANFSRA’s Key Laboratory of Grain and Oil Biotechnology.

Her professional growth reflects not only her technical expertise but also her leadership qualities and commitment to national food security and innovation in grain biotechnology.

🔬 Contributions and Research Focus

Dr. Wang’s primary research interests orbit around probiotics, the intestinal microbiome, and intestinal immunity. She explores how beneficial microbes influence human and animal health, emphasizing the role of probiotics in maintaining intestinal barrier function and regulating innate immunity.

She has also ventured into advanced technologies such as probiotics-encapsulation, ensuring the delivery and viability of beneficial strains during storage and digestion. Moreover, her work on the biotransformation of grain by-products highlights a commitment to sustainability—transforming agricultural waste into valuable functional ingredients.

One of her notable publications, “Optimal dietary ferulic acid for suppressing the obesity-related disorders in leptin-deficient obese C57BL/6J-ob/ob mice”, published in Journal of Agricultural and Food Chemistry (2019), underscores her interest in functional food components and their metabolic implications. Another of her studies focuses on Lactobacillus plantarum and fructooligosaccharides, examining their impact on growth performance and gut health, aligning with her vision of using microbiome science to address nutritional challenges.

🏅 Accolades and Recognition

While specific awards are not listed in the current record, Dr. Wang’s rapid ascent to the Deputy Director role in a prominent national laboratory speaks volumes about her recognition within the scientific community. Being entrusted with a leadership position in a key government-affiliated research institution signifies the high regard her peers and superiors have for her scientific integrity, innovation, and administrative capabilities.

Her contributions to high-impact journals like J Agric Food Chem and her collaborations with multiple co-authors from reputed institutions reflect a well-respected position within the Chinese scientific ecosystem and beyond.

🌏 Impact and Influence

Dr. Wang’s work contributes meaningfully to China’s food security policies, especially through her role at the Academy of National Food and Strategic Reserves Administration. By bridging scientific research with national policy implementation, she ensures that biotechnological advances in grain and food sciences translate into real-world applications. Her focus on ferulic acid, microencapsulation, and gut microbiota has implications not just for human health but also for livestock performance and sustainable agriculture.

Her research aligns with global concerns such as obesity, microbiome imbalance, and food sustainability. As such, Dr. Wang stands at the intersection of health, agriculture, and biotechnology—amplifying the relevance and applicability of her findings on both national and global stages.

🌟 Legacy and Future Contributions

Looking ahead, Dr. Weiwei Wang is poised to leave a lasting legacy in the domain of food biotechnology. As a seasoned researcher and deputy director, she is well-positioned to mentor emerging scientists, foster international collaborations, and shape the next generation of microbiome-based nutritional interventions.

Her work may inspire innovations in functional food design, probiotic therapies, and grain by-product valorization, ensuring that scientific progress continues to support public health, economic growth, and environmental sustainability. With her academic rigor, international exposure, and institutional leadership, Dr. Wang represents a model of translational research that bridges laboratory science with practical, societal benefit.

In the years to come, one can expect her to be a leading voice in agri-food innovation, especially as nations around the world seek resilient and health-promoting food systems in the face of global challenges.

📝Notable Publications

Dietary supplementation of yeast glycoprotein improves egg quality, immunity, antioxidant capacity, and fecal microbiota in laying hen

Authors: Dan Song; Lixian Chen; Lin Qiao; Tao Duan; Junlin Cheng; Aike Li; Weiwei Wang
Journal: International Journal of Biological Macromolecules
Year: 2025

 Generalized Ketogenic Diet Induced Liver Impairment and Reduced Probiotics Abundance of Gut Microbiota in Rat

Authors: Ge Song; Dan Song; Yongwei Wang; Li Wang; Weiwei Wang
Journal: Biology
Year: 2024

 Multi-omics analysis reveals the molecular regulatory network underlying the prevention of Lactiplantibacillus plantarum against LPS-induced salpingitis in laying hens

Authors: Dan Song; Aike Li; Bingxu Chen; Jia Feng; Tao Duan; Junlin Cheng; Lixian Chen; Weiwei Wang; Yuna Min
Journal: Journal of Animal Science and Biotechnology
Year: 2023

Enhanced Cell Wall and Cell Membrane Activity Promotes Heat Adaptation of Enterococcus faecium

Authors: Li Wang; Aike Li; Jun Fang; Yongwei Wang; Lixian Chen; Lin Qiao; Weiwei Wang
Journal: International Journal of Molecular Sciences
Year: 2023

Integrative Multiomics Analysis of the Heat Stress Response of Enterococcus faecium

Authors: Li Wang; Lin Qiao; Aike Li; Lixian Chen; Beibei He; Gang Liu; Weiwei Wang; Jun Fang
Journal: Biomolecules
Year: 2023

Dr. Youming Wang | Team Building and Team Management | Best Researcher Award

Dr. Youming Wang | Team Building and Team Management | Best Researcher Award

Xi’an University of Posts and Telecommunications, China

Author Profile

Scopus

🎓 Early Academic Pursuits

Youming Wang’s journey in academia began with a strong foundation in mechanical engineering, earning his Master of Science degree from Xi’an University of Technology in 2006. His early academic endeavors reflected a growing curiosity about mechanical systems, particularly how they behave under stress, wear, and fluctuating environmental conditions. Driven by a desire to delve deeper into the intricacies of engineering systems, Wang continued his academic journey at Xi’an Jiaotong University, one of China’s most prestigious institutions, where he obtained his Ph.D. in Mechanical Engineering in 2010.

During his formative academic years, Wang developed a keen interest in the dynamic behavior of mechanical structures. His research during this period focused on laying a solid theoretical foundation in fault detection, signal processing, and vibration analysis—areas that would later define the trajectory of his career. His doctoral studies equipped him not only with rigorous technical expertise but also with a vision to address real-world mechanical challenges using cutting-edge engineering principles.

🛠️ Professional Endeavors

Following the completion of his Ph.D., Professor Youming Wang began his academic and research career at the Xi’an University of Posts and Telecommunications, where he currently serves as a full professor. In this role, he has been instrumental in shaping both the academic curriculum and research direction within the department of mechanical and electrical engineering.

His professional life is marked by a balance of scholarly excellence and practical engineering application. At the university, Wang has mentored numerous graduate students and led several projects, bridging the gap between theoretical research and industry needs. His role also includes collaboration with industrial partners to apply research in fault detection and vibration control to complex engineering systems in telecommunications and manufacturing sectors.

🔬 Contributions and Research Focus

Professor Wang’s research is centered on fault diagnosis, vibration control, and structural health management—fields that are crucial to the reliability and safety of modern mechanical systems. His work involves the development of diagnostic algorithms and predictive maintenance tools that allow engineers to detect faults in complex machinery before catastrophic failures occur.

By integrating advanced signal processing techniques, artificial intelligence, and sensor-based monitoring, Wang has contributed to the evolution of smart maintenance systems. These systems are especially important in industries where downtime due to mechanical failure can lead to significant financial losses or safety risks. His research has helped establish frameworks for real-time structural monitoring, ensuring early detection of issues in bridges, turbines, and high-precision equipment.

🏅 Accolades and Recognition

Over the years, Professor Wang has received widespread recognition for his contributions to mechanical engineering and applied diagnostics. Notably, he is a Fellow of the Chinese Communications Society, reflecting his interdisciplinary engagement with engineering and communications technologies. He is also a Director of the Fault Diagnosis Branch of the Chinese Society of Vibration Engineering, a role that underscores his leadership in advancing the field at the national level.

These distinctions highlight Wang’s professional esteem and validate the significance of his contributions to both academia and industry. His leadership roles also position him as a key figure in setting national research agendas and fostering innovation in structural health technologies.

🌏 Impact and Influence

The impact of Professor Wang’s work extends far beyond the university classroom or laboratory. His research has direct applications in several high-stakes industries, including transportation, energy, aerospace, and civil infrastructure. By enabling early fault detection and precision control, his methods help reduce maintenance costs, enhance operational safety, and extend the life span of critical assets.

Wang’s publications have influenced scholars and practitioners across the globe, contributing to a growing body of literature that blends traditional mechanical engineering with emerging digital tools such as machine learning and IoT-enabled diagnostics. His role in mentoring young researchers has also ensured the continuity and evolution of research in this vital area.

🌟 Legacy and Future Contributions

As Professor Youming Wang continues to advance in his career, his focus remains firmly on innovation and interdisciplinary integration. With the growing emphasis on smart cities, cyber-physical systems, and sustainable infrastructure, his expertise in fault diagnosis and structural health monitoring positions him to make lasting contributions to these emerging areas.

Looking ahead, Wang is likely to expand his work into AI-driven fault prediction systems, collaborative robotic diagnostics, and the development of integrated health management frameworks for next-generation infrastructure. His blend of academic rigor, technical proficiency, and visionary leadership ensures that his legacy will be marked by continued influence on both the engineering community and society at large.

An extended iterative filtering and composite multiscale fractional-order Boltzmann-Shannon interaction entropy for rolling bearing fault diagnosis

Author(s): Y. Wang (Youming), X. Wang (Xianzhi), G. Chen (Gaige)
Journal: Applied Acoustics
Year: 2025

 Res-TCEANet: An expansive attention mechanism with positional correspondence based on semi-supervised temporal convolutional network for RUL estimation

Author(s): Y. Wang (Youming), Y. Huang (Yirun)
Journal: Measurement: Journal of the International Measurement Confederation
Year: 2025

A fault diagnosis method of rolling bearings based on masking differential iterative filtering and Euclidean mixed entropy

Author(s): Y. Wang (Youming), X. Yang (Xing), S. Jiao (Shiting)
Journal: Measurement Science and Technology
Year: 2025

 A Multilevel Attitude-Aware Denoising Network for Bearing Fault Diagnosis

Author(s): Y. Wang (Youming), Y. Kang (Yezi), Y. Huang (Yirun)
Journal: IEEE Transactions on Industrial Informatics
Year: 2025

 A Fault Diagnosis Model Based on IFSS-CK-Means Algorithm for the Bolted Structure

Author(s): X. Yang (Xingdong), Y. Wang (Youming), X. Gao (Xiang), J. Tan (Jiyong)
Journal: Conference Paper
Year: (Not specified, assumed 2025 based on others)

Prof. Ming Yang | Team Building and Team Management | Best Researcher Award

Prof. Ming Yang | Team Building and Team Management | Best Researcher Award

Guizhou University, China

Profile

Orchid

Early Academic Pursuits ✨

Ming Yang’s academic journey began with a strong foundation in engineering and technology, nurtured in his native province of Guizhou. Born in December 1990 and belonging to the Tujia ethnic minority, he displayed an early interest in precision measurement and calibration techniques. His academic path led him to Guizhou University, where he developed a deep understanding of monocular vision-based measurement systems, an area that would later define his professional contributions. His doctoral studies were instrumental in honing his expertise, allowing him to engage with cutting-edge research in vibration calibration and sensor technology.

Professional Endeavors and Research Focus 🔬

Ming Yang’s career is marked by a relentless pursuit of innovation in measurement and calibration technologies. As a researcher and academic at Guizhou University, he has been at the forefront of projects that blend monocular vision with dynamic calibration methods. His work primarily revolves around vibration measurement, sensor calibration, and quantity-value traceability, ensuring accuracy in engineering applications. With a robust research background, he has led numerous high-impact projects, securing funding from prestigious institutions such as the National Natural Science Foundation of China and the National Key R&D Program of China.

From 2021 to the present, he has presided over multiple projects aimed at advancing low-frequency multi-component vibration calibration methods. His research on monocular vision-based measurement techniques has provided groundbreaking insights into the field, offering enhanced accuracy in vibration testing and calibration. His expertise extends to the development of control and calibration software, specifically for medium-frequency shakers, contributing to advancements in the transport sector through collaborations with the Institute of Water Transport Science, Ministry of Transport.

Contributions and Impact 🌟

Ming Yang’s research contributions have significantly influenced the field of metrology and precision engineering. His work on the “Integrated Application Demonstration of NQI Key Technologies for Heavy-haul Electric Locomotives” has provided crucial technological advancements in railway transport, ensuring the accuracy and reliability of dynamic testing methodologies. Through his leadership in multiple research projects, he has developed and refined calibration techniques that enhance the performance of vibration sensors, essential for various industrial applications.

His research has also played a pivotal role in bridging the gap between theoretical advancements and real-world engineering applications. His findings have not only been disseminated through academic publications but have also been practically implemented in national institutes and industrial settings. By leading projects such as the “Development of Gravity Field Orientation Device” in collaboration with the National Institute of Metrology, he has demonstrated his ability to translate complex scientific principles into functional and impactful technological solutions.

Accolades and Recognition 🏆

Ming Yang’s dedication to his field has earned him recognition within the scientific community. His role as the principal investigator in numerous prestigious projects highlights the trust and confidence placed in his expertise by national research institutions. The Guizhou University Project on “Discipline Multiplication and Improvement” specifically recognized his contributions to enhancing international academic influence. Additionally, his selection for the “Youth Science and Technology Talents Development Project” of the Guizhou Education Department underscores his status as a promising researcher committed to technological advancement.

Legacy and Future Contributions 💡

Looking ahead, Ming Yang’s research is poised to leave a lasting impact on the field of precision measurement and calibration. His ongoing projects continue to push the boundaries of sensor technology and vibration analysis, with far-reaching applications in transportation, industrial quality control, and scientific instrumentation. With his firm commitment to advancing monocular vision-based measurement methodologies, he is set to shape the future of dynamic calibration and quantity-value traceability.

His influence extends beyond research; as an educator, he plays a crucial role in mentoring the next generation of engineers and researchers. His contributions to Guizhou University and his collaborations with national institutes ensure that his knowledge and innovations are passed down to future scholars. By continuing to lead cutting-edge projects and fostering international research collaborations, Ming Yang is paving the way for future advancements in the field of metrology and sensor calibration, ensuring his legacy as a visionary in precision engineering.

📝Notable Publications

Economic-environmental dispatch of isolated microgrids based on dynamic classification sparrow search algorithm

Authors: G. Xie, M. Zhang, D. Wang, M. Yang

Journal: Expert Systems with Applications

Year: 2025

Monocular vision-based key feature point positioning method for micro-vibration measurement of building structures

Authors: W. Xie, M. Yang, G. Tan, C. Liang, D. Wang

Journal: Engineering Structures

Year: 2025

Deep learning-based interpretable prediction and compensation method for improving pose accuracy of parallel robots

Authors: X. Zhu, H. Zhang, Z. Liu, M. Yang, H. Chen

Journal: Expert Systems with Applications

Year: 2025

NHBBWO: A novel hybrid butterfly-beluga whale optimization algorithm with the dynamic strategy for WSN coverage optimization

Authors: X. Chen, M. Zhang, M. Yang, D. Wang

Journal: Peer-to-Peer Networking and Applications

Year: 2025

Quantum particle swarm optimization with chaotic encoding schemes for flexible job-shop scheduling problem

Authors: Y. Xu, D. Wang, M. Zhang, M. Yang, C. Liang

Journal: Swarm and Evolutionary Computation

Year: 2025

Ms. Meri Manucharyan | Team Building and Team Management | Best Researcher Award

Ms. Meri Manucharyan | Team Building and Team Management | Best Researcher Award

Institute of Economics named after M. Kotanyan of National Academy of Sciences of RA, Armenia

Profile

Orchid

Early Academic Pursuits 🎓

Meri Manucharyan embarked on her academic journey with a strong foundation in economics. Her passion for research and education led her to pursue a Ph.D. in Economics, where she specialized in key areas such as labor economics, agrarian economics, and human resource management. Her early years in academia were marked by rigorous research, innovative teaching methodologies, and a commitment to advancing economic knowledge, particularly within Armenia’s agricultural sector.

Professional Endeavors 💼

Currently serving as the Director at the Institute of Economics named after M. Kotanyan of the National Academy of Sciences of Armenia (NAS RA), Meri Manucharyan has been a pivotal figure in shaping economic research and policy in Armenia. In addition to her leadership role, she serves as a lecturer at the Armenian National Agrarian University, where she imparts her expertise to undergraduate and graduate students. With 14 years of experience in scientific and pedagogical work, she has contributed significantly to shaping young economists and fostering a culture of research and innovation.

Her academic contributions extend to diverse economic disciplines, including Labor Economics, Human Resource Management, Agrarian Economics, Product Marketing, Innovation Economics, and the Methodology of Scientific Research. These subjects have equipped students with essential knowledge and skills, ensuring their readiness for practical economic challenges.

Contributions and Research Focus 🌿

Meri Manucharyan has actively engaged in groundbreaking research, particularly focusing on climate change impacts on sustainable agriculture. Her research, “Climate Change Impacts on Sustainable Agriculture: Evidence from Armenia,” has provided valuable insights into the resilience and adaptability of Armenia’s agrarian sector. Her work emphasizes the importance of policy interventions and sustainable practices to mitigate the adverse effects of climate change on food security.

Beyond her academic research, she has been involved in consultancy and industry projects, including “Introducing the Concept of the Circular Economy Model as a Necessity to Increase Food Security in Armenia.” This project underscores the importance of sustainability and economic resilience in the agricultural sector.

Accolades and Recognition 🏆

Meri Manucharyan’s contributions to academia and research have been recognized at national and international levels. With over 90 scientific articles published—including 7 indexed in Scopus and Web of Science—her work has gained widespread recognition in the global research community. Additionally, she has authored three monographs and three methodological guidelines that serve as key resources for economic scholars and policymakers.

Her research impact is reflected in citation indices, with two citations in Scopus and one in Web of Science. She has also contributed to renowned journals such as KeAi, Elsevier, MDPI, and Taylor & Francis. Her editorial role in “Unconventional Resources” further solidifies her influence in academic publishing and thought leadership.

Impact and Influence 📈

Through her research, teaching, and leadership roles, Meri Manucharyan has significantly influenced the fields of economics and sustainable agriculture. Her findings have contributed to shaping economic policies in Armenia, particularly in agrarian development and digital transformation. By integrating real-world applications into her academic work, she has bridged the gap between research and practical economic solutions.

Her publications, including “Agricultural Insurance Issues in the Republic of Armenia” (ISBN 978-5-8080-1381-0), “The Role of Lending in the Development of the Agrarian Sector of the Republic of Armenia and Ways to Improve It” (ISBN 978-9939-9260-0-1), and “Digital Economy: Prospects for the Development of the Agrarian Sector” (ISBN 978-9939-9279-7-8), highlight her dedication to enhancing economic sustainability in Armenia.

Legacy and Future Contributions 🎨

As a leader in the field of economics, Meri Manucharyan continues to inspire the next generation of economists and policymakers. Her commitment to innovation and research excellence is shaping the future of economic studies in Armenia. Moving forward, she aims to expand her research on climate resilience, digital transformation in agriculture, and circular economy models.

Her influence extends beyond academia, as she actively collaborates with national and international organizations to develop sustainable economic policies. Through her scholarly contributions and leadership, she is set to leave a lasting legacy in the fields of agrarian economics, labor market development, and economic sustainability.

With her continued dedication, Meri Manucharyan remains a beacon of academic excellence, research innovation, and economic development, fostering a brighter future for Armenia and beyond.

📝Notable Publications

Climate Change Impacts on Sustainable Agriculture: Evidence from Armenia

Author: Meri Manucharyan
Journal: Unconventional Resources
Year: 2025

Digital literacy of the Armenian society: assessment and determinants

Authors: Gevorg Harutyunyan, Meri Manucharyan, Meri Muradyan, Hovhannes Asatryan
Journal: Cogent Social Sciences
Year: 2024

Analyzing commercial grape farm efficiency in Armavir region (Armenia) by using two-stage empirical approach

Authors: Hovhannes Asatryan, Vardan Aleksanyan, Samvel Asatryan, Meri Manucharyan
Journal: Statistical Journal of the IAOS
Year: 2024

Determining Digitalization Issues (ICT Adoption, Digital Literacy, and the Digital Divide) in Rural Areas by Using Sample Surveys: The Case of Armenia

Authors: Felix Arion, Gevorg Harutyunyan, Vardan Aleksanyan, Meri Muradyan, Hovhannes Asatryan, Meri Manucharyan
Journal: Agriculture
Year: 2024

Dynamics of the development of viticulture in RA: The econometric case study

Authors: Hovhannes Asatryan, Vardan Aleksanyan, Lusine Azatyan, Meri Manucharyan
Journal: Statistical Journal of the IAOS
Year: 2022

Misba Majod |Team Building and Team Management | Young Scientist Award

Congratulations, MISBA MAJOOD - Team Building and Team Management - Young Scientist Award -Award Winner 2023

Dr.MISBA MAJOOD :Team Building and Team Management

Congratulations to Dr. Misba Majood on Receiving the Young Scientist Award for Team Building and Management! Dr. Misba Majood's outstanding leadership in team building and management has earned her the prestigious Young Scientist Award. Her ability to foster collaboration, inspire innovation, and drive excellence within her research teams has made a significant impact in the field of cellular biology.

Professional Profile 

Orcid

 

Early Academic Pursuits

Misba Majood's academic journey began with a B.Tech+M.Tech in Biotechnology from Amity University, Uttar Pradesh, India, where she laid the foundation for her scientific career. During this period, she engaged in projects such as "Cloning of Mycobacterium Genes" and "Plasmid Isolation and Restriction Digestion" at prestigious institutions like the Central Drug Research Institute, Lucknow.

Professional Endeavors

Misba's professional journey reflects a diverse and enriching experience in the field of cellular biology and biotechnology. From her role as a Sales Trainee at Cryobanks International to her Research Analyst position at Nutragene Pvt Ltd, she demonstrated versatility in both sales and laboratory research. Her transition to a Junior Research Fellow at the Translational Health Science and Technology Institute marked the beginning of her dedicated research career.

Contributions and Research Focus

As a cellular biologist, Misba's doctoral experience focused on innovative nanomaterials and hydrogels for stem cell research. Her contributions extend to diverse projects such as "In vitro Gametogenesis" at Tropical Animal Genetics (TAG) Pvt Ltd and "Development of a high throughput genome editing pipeline" at All India Institute of Medical Sciences.

Accolades and Recognition

Misba's commitment to scientific excellence is evident in her numerous publications, including articles in renowned journals such as "ACS Applied Materials & Interfaces" and "Frontiers in Immunology." She has received recognition, winning the 1st prize in a poster presentation at the WOST 2022 conference and delivering oral presentations at international conferences.

Impact and Influence

Misba's work has left a mark on various aspects of cellular biology. Her research on carbon nanosheets, carbon quantum dots, and graphene quantum dot-hybrid hydrogels showcases her contribution to innovative materials with applications in drug discovery, chondrogenesis, and diabetic wound healing.

Legacy and Future Contributions

Misba's legacy lies in her dedication to advancing science. Her involvement in the development of nanotheranostic platforms and the exploration of biomimetic injectable organo-hydrogels underscores her commitment to cutting-edge research. Her future contributions are anticipated in ongoing projects, including those on quantum dots, nanocomposite hydrogels, and antibacterial studies.

Misba's journey exemplifies a scientist dedicated to bridging the gap between theory and application, with a profound impact on the fields of nanotechnology, stem cell research, and biomaterials. Her collaborative spirit, demonstrated through workshops, presentations, and international conferences, positions her as a promising researcher in the scientific community.

Notable Publications 

Carbon nanosheets to unravel the production of bioactive compounds from microalgae: A robust approach in drug discovery

Correction: Injectable organo-hydrogels influenced by click chemistry as a paramount stratagem in the conveyor belt of pharmaceutical revolution

Graphene quantum dots-hybrid hydrogel as an avant-garde biomimetic scaffold for diabetic wound healing

Injectable organo-hydrogels influenced by click chemistry as a paramount stratagem in the conveyor belt of pharmaceutical revolution

Biogenic Carbon Quantum Dots as a Neoteric Inducer in the Game of Directing Chondrogenesis

Hydrogel Nanosheets Confined 2D Rhombic Ice: A New Platform Enhancing Chondrogenesis

Carbon Quantum Dots for Stem Cell Imaging and Deciding the Fate of Stem Cell Differentiation

Delineating the role of extracellular vesicles in cancer metastasis: A comprehensive review

Chitosan-coated pore wall polycaprolactone three-dimensional porous scaffolds fabricated by porogen leaching method for bone tissue engineering: a comparative study on blending technique to fabricate scaffolds

Fabrication and characterization of customized tubular scaffolds for tracheal tissue engineering by using solvent based 3D printing on predefined template