Shengen Gong | Energy storage | Best Researcher Award | 13562

Assist Prof Dr. Shengen Gong | Energy storage | Best Researcher Award

Assist Prof Dr. Shengen Gong, Jilin University, China

Assist. Prof. Dr. Shengen Gong is an emerging scholar in the field of polymer chemistry and energy storage materials at Jilin University, China. With a robust academic foundation—including a doctorate in Polymer Chemistry and Physics—and extensive industry experience in polymer solid-state electrolytes and silicon-carbon anodes, Dr. Gong has made significant contributions to zinc-ion batteries and supercapacitors. He has authored 9 first-author SCI-indexed papers in top-tier journals like Angewandte Chemie, Advanced Functional Materials, and Chemical Science. A recipient of multiple national awards and honors, his research is at the forefront of electrochemical energy storage innovation.

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Education

Dr. Shengen Gong’s academic journey began with a solid foundation in Applied Chemistry at Jiangxi Science and Technology Normal University, where he earned his Bachelor’s degree in 2019. His curiosity for materials science and innovative chemical applications inspired him to pursue a Master’s degree in Polymer Chemistry and Physics at Northeast Normal University, completed in 2022. During this time, Dr. Gong displayed academic brilliance and research enthusiasm, which culminated in the award of an Excellent Master’s Thesis, reflecting his early research impact.

Continuing his intellectual pursuit, Dr. Gong enrolled at Jilin University for his Doctoral studies in Polymer Chemistry and Physics, one of China’s most prestigious programs in the field. His doctoral work—expected to conclude in 2025—has already produced numerous high-impact scientific publications, showcasing his strong command over advanced materials and electrochemical energy storage.

Experience

Alongside his academic progress, Dr. Gong has accumulated significant industrial experience. He began as a Technical Assistant at Jiangxi United Chemical Co., Ltd. in 2019, working on polyurethane synthesis and performance testing. His growing expertise led him to a Research and Development Assistant position at Jiangxi Hongrun Chemical Co., Ltd., where he optimized production processes for chlorosulfonated polyethylene rubber. In 2024, he served as a Senior R&D Engineer at Jilin Dongchi New Energy Co., Ltd., developing polymer solid-state electrolytes, a cutting-edge solution for energy storage technologies. By early 2025, he joined Zhejiang Carbon One New Energy Co., Ltd., focusing on porous silicon-carbon anode development, indicating his expanding role in next-generation battery innovations.

Research Focus

Dr. Shengen Gong’s research is deeply rooted in the field of electrochemical energy storage, with a specialized focus on zinc-ion batteries and supercapacitors. His scientific contributions are both foundational and application-oriented, addressing critical challenges in material performance, structural stability, and energy efficiency. As the first author of 9 SCI-indexed papers, all published in top-tier JCR Q1 journals such as Angewandte Chemie International Edition, Chemical Science, Advanced Functional Materials, and Nano Energy, Dr. Gong has established himself as a promising innovator in the energy materials community.

His groundbreaking studies include the optimization of electrolytes to overcome conventional limitations of zinc-ion batteries and the incorporation of magnesium-ion doping in polyaniline systems to significantly enhance alkaline battery output. He has also introduced dual energy storage mechanisms that extend voltage ranges and boost longevity and applied defect engineering techniques to fine-tune the structure of electrode materials, thereby improving conductivity and cycle stability. Additionally, Dr. Gong has pioneered flexible supercapacitor designs using novel sulfur-sulfur bonding strategies, achieving high mass-specific capacities and robust mechanical performance. His work blends experimental depth with theoretical innovation, consistently pushing the boundaries of what is technically and commercially possible in next-generation energy storage solutions.

Awards and Honor

Dr. Gong’s outstanding academic performance and research achievements have earned him multiple national and institutional honors. Notably, he is the recipient of two National Scholarships from the Ministry of Education of China—a highly competitive and prestigious award that recognizes academic excellence and research potential at the national level. In addition, his Master’s dissertation was awarded the Excellent Master’s Thesis, further highlighting the scholarly rigor and impact of his early research. His dedication to holistic academic life is reflected in honors such as the Excellent Research Student title and Outstanding Cadre Scholarships, which commend both his leadership and active engagement in university affairs. Beyond academics, Dr. Gong has also excelled in sports, representing his university in the 36th Athletic Games and achieving notable success in events like running and badminton. These recognitions together paint the picture of a well-rounded scholar—resilient, versatile, and committed to excellence in every endeavor.

Publications

Asymmetry-induced mechanism of amorphous structures for effective construction of new active sites for energy storage –

Author: Jiaru Li, Kaisheng Sun, Yiying Wei, Shengen Gong, Danming Chao
Journal: Chemical Engineering Journal (2025).

Work function-activated proton intercalation chemistry assists ultra-stable aqueous zinc ion batteries

Author: Kaisheng Sun, Yumiao Tian, Meihua Zhu, Shengen Gong, Jiaru Li, Fangfei Li, Liang Li, Xing Meng, Danming Chao
Journal: Colloid and Interface Science (2024).

Doping of magnesium ions into polyaniline enables high-performance Zn-Mg alkaline batteries

Author: Shengen Gong, Kaisheng Sun, Fang Yang, Shuangyu Wu, Yifan Wang, Runan Li , Xiaoteng Jia, Caiyun Wang, Danming Chao
Journal: Nano Energy (2024) – Cited by 1 article.

An interactive dual energy storage mechanism boosts high-performance aqueous zinc-ion batteries

Author: Shengen Gong, Meihua Zhu, Yan Zhou, Runan Li, Jianhua Zhang, Xiaoteng Jia, Danming Chao, Caiyun Wang
Journal: Chemical science (2024) – Cited by 6 articles.

Conclusion

Assist. Prof. Dr. Shengen Gong stands out as a dynamic and impactful researcher in polymer chemistry and energy storage technologies. His blend of academic excellence, innovative research, and high-impact publications demonstrates a strong commitment to advancing sustainable energy solutions. With continued contributions to next-generation battery materials and electrochemical systems, Dr. Gong is poised to play a pivotal role in shaping the future of clean energy storage and materials science.

 

Zong Lu | 2D Materials | Best Researcher Award | 13501

Dr. Zong Lu | 2D Materials | Best Researcher Award

Dr. Zong Lu, South China University of Technology, China

Dr. Zong Lu is a postdoctoral researcher at the South China University of Technology, renowned for his pioneering work on 2D material membranes. His research focuses on the structural modulation and scalable fabrication of advanced MXene-based membranes for selective ion separation, lithium-ion recovery, and hydrogen purification. With over 2,200 citations, his work is widely recognized in high-impact journals like Angewandte Chemie and ACS Nano. Dr. Lu has significantly advanced techniques such as self-crosslinking and asymmetric amplification, pushing the frontiers of membrane science and clean energy applications.

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🎓 Early Academic Pursuits

Dr. Zong Lu began his journey into the world of materials science with a strong academic foundation rooted in curiosity and a passion for innovation. From the outset of his education, he exhibited a keen interest in nanomaterials and separation technologies, particularly the fascinating behavior and properties of two-dimensional (2D) materials. His academic path was guided by a vision to engineer functional materials with high performance for real-world applications.

Throughout his undergraduate and graduate studies, Dr. Lu delved deeply into the synthesis, characterization, and application of novel materials, with a growing focus on membrane science. He was particularly drawn to MXenes—a family of 2D transition metal carbides and nitrides—which later became the centerpiece of his research career.

🧪 Professional Endeavors

Currently serving as a Postdoctoral Researcher at the South China University of Technology, Dr. Lu has firmly established himself in the international research community. He works under the guidance of experienced mentors and in collaboration with distinguished research teams to develop scalable membrane technologies for ion separation, energy purification, and environmental sustainability.

One of his professional goals has been the scalable and precise engineering of MXene-based composite membranes. In pursuit of this, he has developed several structural modulation techniques including self-crosslinking strategies, asymmetric amplification, and large-area electrodeposition. These efforts have enabled real-world applicability of 2D materials in industrial-scale separation technologies.

🔬 Contributions and Research Focus

Dr. Lu’s research revolves around 2D membrane materials, particularly MXene-based membranes used for selective ion rejection and energy-efficient separation. His innovations include:

  • Application of 2D Self-Crosslinked MXene Membranes for enhanced ion exclusion, especially monovalent ions like Li⁺ and Na⁺.

  • Asymmetric Membrane Strategies to achieve superior K⁺/Na⁺ selectivity, a crucial challenge in lithium resource recovery.

  • Scalable Electrodeposition Techniques for rapid and efficient production of large-area MXene membranes.

  • Composite Membrane Engineering using materials like ZIF-8 and Graphene Oxide for hydrogen purification and CO₂ separation.

With over 10 peer-reviewed publications in top-tier journals such as Angewandte Chemie International Edition, ACS Nano, Chemical Engineering Journal, and AIChE Journal, his contributions have significantly advanced both the science and technology of membrane-based separations.

🏅 Accolades and Recognition

Dr. Lu’s growing influence in the scientific community is reflected by his Google Scholar citation index of 2,204, a testament to the relevance and quality of his research. He is a recipient of the China Postdoctoral Science Foundation (76th batch, General Funding), which supports high-potential researchers in their early career development.

His work has gained traction not only in academic settings but also in industrial and environmental applications—where scalable, efficient separation techniques are critically needed. His collaboration with global experts like Prof. Haihui Wang and Yanying Wei has further solidified his reputation as a rising expert in membrane technologies.

🌍 Impact and Influence

Dr. Lu’s impact spans multiple interdisciplinary fields including nanotechnology, chemical engineering, environmental science, and energy purification. His research on lithium-ion and potassium-ion separation aligns with global demands for sustainable resource recovery, particularly important for the electric vehicle and battery industries.

Additionally, his work on hydrogen purification membranes contributes to the global push toward clean and renewable energy sources. His methods enable scalable and practical applications, moving fundamental research out of the lab and into industry. Through his publications, he has influenced peers and upcoming researchers, offering new strategies for dealing with swelling in 2D membranes and enhancing ion selectivity.

🌟 Legacy and Future Contributions

As a young researcher, Dr. Zong Lu is poised to leave a lasting legacy in membrane science and nanotechnology. His innovative synthesis techniques, combined with his ability to scale laboratory discoveries for industrial application, position him as a leading figure in the next generation of materials scientists.

Looking forward, Dr. Lu aims to expand his research into multifunctional membrane systems for water purification, bio-separation, and energy storage. With his strong interdisciplinary background, mentorship potential, and relentless drive for innovation, he is well on his way to establishing a center of excellence in 2D membrane technologies.

He is also expected to contribute significantly to academic mentorship, international collaboration, and applied research through continued partnerships and grant projects.

✍️ Publication Top Notes


📘ZIF-8-MXene/Nylon composite membrane for high-efficiency hydrogen purification

Author: Mide Luo , Yali Zhao , Zong Lu , Yanying Wei

Journal: Membrane Science

Year: 2025


📘Solvent-mediated structural regulation of MXene membranes for H2 purification

Author: Changdie Cao, Yurun Dai, Zhihao Liu, Zong Lu, Mide Luo, Yanying Wei, Haihui Wang

Journal: Chemical Engineering Science

Year: 2025