Pengfei Wang | Environment | Best Researcher Award

Dr. Pengfei Wang | Environment | Best Researcher Award

Research Assistant Professor Southern University of Science and Technology | China

Dr. Pengfei Wang is a Research Assistant Professor at the Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology, Shenzhen, China, where he has been actively engaged in advanced research on energy and environmental engineering since 2021. He obtained his Ph.D. in Energy and Power Engineering from Dalian University of Technology in 2019, under the supervision of Professor Yongchen Song, and completed a visiting research program at the University of Western Australia’s Energy Research Centre in 2017. Prior to his current role, Dr. Wang served as a Postdoctoral Researcher in the Department of Physics at SUSTech, working with Chair Professor Yusheng Zhao on multiphase hydrate systems and neutron technology applications. His research spans natural gas hydrate exploitation, hydrate-based hydrogen storage, and offshore CO₂ geological sequestration, focusing on the thermodynamics, kinetics, and multiphase flow behavior in porous media. Dr. Wang has made notable contributions to understanding the interaction between hydrate structures and nanoconfinement effects for energy conversion and carbon capture applications. He has published 82 SCI-indexed papers, including several in high-impact journals such as Chemical Reviews, Chemical Engineering Journal, and Renewable and Sustainable Energy Reviews, along with holding 8 authorized invention patents and 1 software copyright. His work has been cited 1,829 times by 1,403 documents, reflecting an h-index of 24, underscoring his academic impact and global recognition within the field. He has been honored with the Shenzhen Overseas High-Level Talent “Peacock Plan” Award, and received multiple academic distinctions including the Excellent Doctoral Dissertation of Liaoning Province and the Wiley China Annual Open Author Award. Dr. Wang’s ongoing research aims to develop sustainable hydrate technologies for energy transition and carbon neutrality strategies in offshore and industrial contexts. With his strong interdisciplinary background and innovative approach, he continues to advance the frontiers of energy storage, climate engineering, and environmental sustainability.

Profile: Scopus | ORCID

Featured Publications

Wang, P., Chen, Y., Teng, Y., An, S., Li, Y., Han, M., Yuan, B., Shen, S., Chen, B., Han, S., et al. (2024). A comprehensive review of hydrogen purification using a hydrate-based method.

Yang, M., Wu, M., Yang, Z., Wang, P., Chen, B., & Song, Y. (2024). Behaviors of hydrate cap formation via CO₂–H₂O collaborative injection: Applying to secure marine carbon storage.

Yuan, B., Han, M., Li, Y., Wang, P., Xu, J., Yin, W., Kang, L., Tong, X., Han, S., Zhu, J., et al. (2024). Effect of organic matter with various carbon chain lengths on methane hydrate formation: Kinetic, thermodynamic, and microstructural studies.

Wang, P., Li, Y., Sun, N., Han, S., Wang, X., Su, Q., Li, Y., He, J., Yu, X., Du, S., et al. (2024). Hydrate technologies for CO₂ capture and sequestration: Status and perspectives.

Teng, Y., Li, Y., Huang, T., Chen, Y., Wang, P., Wang, B., An, S., Li, Y., Han, S., Zhu, J., et al. (2024). Hydrogen purification via hydrate-based methods: Insights into H₂–CO₂–CO hydrate structures, thermodynamics, and kinetics.

Qi Yang | Sustainable Polymer | Best Academic Researcher Award

Assoc. Prof. Dr. Qi Yang | Sustainable Polymer | Best Academic Researcher Award

Teacher at Qingdao University of Science and Technology | China

Assoc. Prof. Dr. Qi Yang is a dedicated researcher and academic in the field of polymer science and engineering, currently serving as an Associate Professor at the School of Polymer Science and Engineering, Qingdao University of Science and Technology. He earned his Bachelor of Engineering in Polymer Materials and Engineering from Qingdao University of Science and Technology in 2014, followed by a Ph.D. in Material Science from the University of Science and Technology of China in 2019, where he conducted advanced research under the guidance of Prof. Xuequan Zhang. Since 2020, he has contributed significantly to teaching and research as a faculty member, while also expanding his international academic exposure through a postdoctoral fellowship at Tampere University from 2023 to 2025. His research interests center on developing eco-friendly synthetic pathways for diene rubbers, exploring novel structures and properties to enhance their industrial applications, and advancing functionalization methods to equip synthetic rubbers with innovative properties tailored for sectors including healthcare and electronics. He is also deeply engaged in creating stimuli-responsive rubber materials that react to light, heat, and magnetism, enabling their integration into soft robotics for intelligent, flexible actuation and adaptive deformation. Assoc. Prof. Dr. Qi Yang scholarly contributions are evidenced by his publications in high-impact journals, covering topics such as selective polymerization of isoprene, novel copolymer designs for high-performance elastomers, light-responsive programmable materials, and sustainable thermoplastic elastomers. His work not only advances the understanding of polymer structures and properties but also bridges fundamental research with practical applications in advanced materials. With a strong foundation in material science and a focus on sustainable and intelligent polymer systems, Assoc. Prof. Dr. Qi Yang continues to make meaningful contributions to the field, aiming to drive innovation in both academic research and industrial applications.

Profile: ORCID

Featured Publications

Liu, X., Yang, Q., Zhang, C., Zhang, X., & Liu, H. (2024). 3,4-Selective polymerization of isoprene by iron-based system: The key role of borate salts for enhancing catalytic activities and broadening 1,10-phenanthroline ligand scope.

Liu, X., Zheng, H., Wang, X., Jiang, Z., Gu, J., Liu, H., Zhang, C., Yang, Q., & Zhang, X. (2023). Novel butadiene/isoprene copolymer with predominant 1,2/3,4-units: A tough thermoplastic elastomer material with superior dynamic mechanical properties.

Yang, Q., Shahsavan, H., Deng, Z., Guo, H., Zhang, H., Liu, H., Zhang, C., Priimagi, A., Zhang, X., & Zeng, H. (2022). Semi‐crystalline rubber as a light‐responsive, programmable, resilient robotic material.

Yang, Q., Zheng, W., Zhao, W., Peng, C., Ren, J., Yu, Q., Hu, Y., & Zhang, X. (2019). One-way and two-way shape memory effects of a high-strain cis-1,4-polybutadiene–polyethylene copolymer based dynamic network via self-complementary quadruple hydrogen bonding.

Yang, Q., Peng, C., Ren, J., Zhao, W., Zheng, W., Zhang, C., Hu, Y., & Zhang, X. (2019). A near-infrared photoactuator based on shape memory semi-crystalline polymers toward light-fueled crane, grasper, and walker.

Yang, Q., Wang, X., Wang, B., Liu, Y., Sun, Y., Na, L., Wang, F., Zhang, C., Liu, H., & Zhang, X. (2021). Toward sustainable and strong ABA-type thermoplastic elastomers with poly(ε-caprolactone-co-4-methyl-ε-caprolactone) soft midblock and polystyrene hard end blocks.