Zhaochun Li | Intelligent Material Systems And Control | Best Researcher Award

Prof. Zhaochun Li | Intelligent Material Systems And Control | Best Researcher Award

Nanjing Forestry University | China

Dr. Li is a distinguished professor in the College of Mechanical and Electronic Engineering at Nanjing Forestry University, where she has built a strong reputation for her pioneering work in intelligent material systems and advanced control techniques. Her academic journey and professional achievements reflect a deep commitment to innovation in engineering research, particularly in areas that address critical challenges in mechanical performance and structural reliability. With a primary focus on intelligent material systems, Dr. Li has explored how these innovative materials can be effectively integrated into modern engineering applications to enhance efficiency and adaptability. A major part of her research is dedicated to passive and active vibration control, an area that plays a crucial role in ensuring stability, safety, and precision in a wide range of engineering systems. By advancing methods to mitigate vibrations, her work contributes to improving structural durability and performance in both industrial and technological contexts. Over the course of her career, Dr. Li has authored more than 60 peer-reviewed journal articles, providing valuable insights and shaping discourse within her field. Her scholarly contributions not only strengthen academic understanding but also open pathways for practical applications, positioning her as a respected leader and innovator in engineering research.

Profile: Orcid

Featured Publication

Hou, M., Xu, X., Ouyang, Q., & Li, Z. (2025, September 30). Research on model predictive control of magnetorheological impact buffer system considering driver modeling. Engineering Research Express.

Zheng, Z., Zhan, J., Li, Z., Wang, Y., Xu, C., & Wang, X. (2025, September 15). Data-driven twisted string actuation for lightweight and compliant anthropomorphic dexterous hands. Biomimetics.

Zheng, J., Xu, C., Li, Z., Gu, C., Li, X., Li, Z., Li, Y., Lou, G., & Chen, Y. (2024). Growing bimetallic CoNi-MOF derivatives between MXene layers with hierarchically coral-like interfaces for enhanced electromagnetic wave absorption. Journal of Materials Chemistry A.

Zheng, J., Zhao, J., Wang, L., Li, Z., Dong, W., & E, S. (2022, November). Optimal control for soft-landing in elevator emergency crash using multiple magnetorheological shock absorbers. Journal of Intelligent Material Systems and Structures.

Zhang, J., Li, Z., & Liu, X. (2021, November 8). Intelligent tea-picking system based on active computer vision and Internet of Things. Security and Communication Networks.

Dr. Tamara Erceg – Biopolymers – Best Researcher Award

Dr. Tamara Erceg - Biopolymers - Best Researcher Award

Faculty of Technology Novi Sad - Serbia

Professional Profile

SCOPUS

EARLY ACADEMIC PURSUITS šŸŽ“

Tamara Erceg was born on July 29, 1988, in Sombor, Serbia. Her academic journey began at the Faculty of Technology, University of Novi Sad, where she completed her MSc and Bachelor's degrees in Pharmaceuticals Engineering with an impressive average note of 9.70. She further pursued her academic excellence with a Ph.D. in Polymer Science from the same university, achieving a perfect average note of 10.00. Her Ph.D. thesis focused on the "Structuring of polymer networks based on acrylamide and acrylic acid."

PROFESSIONAL ENDEAVORS šŸ¢

Tamara has been deeply involved in both educational and research activities. Since 2013, she has been providing private lectures on Probability and Statistics, and Chemistry. In 2016, she joined the Faculty of Technology Novi Sad, where she engaged in laboratory and computational exercises across various courses within the Materials Engineering program. She is currently a Research Associate at the same institution, contributing to the advancement of polymer science and technology.

CONTRIBUTIONS AND RESEARCH FOCUS šŸ”¬

Tamara’s research is centered on the design, synthesis, and modification of polymer materials with an emphasis on green chemistry and the circular economy. Her work includes the recycling of polymeric materials, development of biodegradable and edible active packaging, and the Biopolymers characterization of polymers with diverse structures and applications. Her innovative research contributes to the field of polymer science, particularly in the development of sustainable materials.

ACCREDITATIONS AND RECOGNITION šŸ…

Tamara has received significant recognition for her research. She has been an active member of various scientific committees and has reviewed papers for prestigious journals like ACS Sustainable Chemistry & Engineering and Carbohydrate Polymers. Her contributions to conferences and journals underscore her status as a respected researcher in her field. Her publications in high-impact journals like the International Journal of Biopolymers Biological Macromolecules and Polymers highlight her valuable contributions to polymer science.

IMPACT AND INFLUENCE šŸŒ

Tamara’s research has a substantial impact on the development of sustainable and biodegradable materials. Her work on active edible coatings and biodegradable films contributes to advancements in food packaging and environmental sustainability. By focusing on green chemistry Biopolymers principles, she aids in reducing the environmental footprint of polymer production and usage, influencing both academic research and industrial practices.

LEGACY AND FUTURE CONTRIBUTIONS šŸ”®

Tamara Erceg’s legacy lies in her pioneering contributions to polymer science and sustainable material development. Her dedication to research and education ensures that her work will continue to influence future studies and innovations in the field. Tamara's commitment to green chemistry and circular economy principles paves the way for more sustainable and environmentally friendly polymer technologies, leaving a lasting impact on both the scientific community and society at large.

NOTABLE PUBLICATIONS