Xiaoqi Liu | Bromine-based flow battery | Research Excellence Award

Assoc. Prof. Dr. Xiaoqi Liu | Bromine-based flow battery | Research Excellence Award

Taiyuan University of Science and Technology | China 

The scholar is an academic researcher in chemical engineering and Bromine-based flow battery materials science with a strong foundation in electrochemical energy storage technologies. Academic training in materials science and engineering provided a solid basis for advanced research in functional materials and electrochemical systems. Doctoral research conducted at a leading national research institute focused on iron-based flow battery systems, emphasizing electrolyte design, redox reaction mechanisms, and performance optimization for large-scale energy storage applications. Currently engaged in teaching and research at a university-level chemical engineering institution, the researcher’s work integrates electrochemistry, materials engineering, and energy technology. Research interests include redox flow batteries, iron-based energy storage systems, electrode material modification, electrolyte stability, and scalable energy storage solutions for renewable energy integration. The researcher has actively participated in multiple provincially supported research and innovation programs, contributing to fundamental and applied studies aimed at improving battery efficiency, durability, and cost-effectiveness. Ongoing projects emphasize sustainable energy storage materials, system optimization, and technological innovation aligned with clean energy and low-carbon development goals. Through a combination of experimental research and applied engineering approaches, the scholar contributes to advancing next-generation electrochemical energy storage technologies with potential industrial and environmental impact.

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Masanari Tomozawa | Battery Materials | Research Excellence Award

Dr. Masanari Tomozawa | Battery Materials | Research Excellence Award

JFE steel co | Japan

Masanari Tomozawa is an accomplished materials scientist and Group Leader at JFE Steel Corporation, recognized for his extensive expertise in metallic materials, shape memory alloys, and advanced electron microscopy–based characterization. He earned his doctoral degree in Engineering from the University of Tsukuba, where he specialized in the development of shape memory alloy thin films, laying the foundation for a distinguished research career. His professional journey has spanned leading Japanese research institutions, including the National Institute of Advanced Industrial Science and Technology, the National Institute for Materials Science, the Central Research Institute of Electric Power Industry, Toray Research Center, and JFE Steel Corporation. Throughout his career, he has contributed significantly to innovations in materials development, microstructural analysis, and performance evaluation of advanced alloys. His scholarly output includes a strong portfolio of peer-reviewed journals indexed in SCI and Scopus, patents in progress and published, and impactful research collaborations with industry. He has also engaged in major consultancy and R&D projects that support technological advancements in the steel and materials sectors. His academic footprint reflects an h-index of [H-INDEX], with  citations and published documents, demonstrating his sustained influence and continued contributions to the scientific community.

Profile: Scopus 

Featured Publications 

AuthorLastName, A. A., AuthorLastName, B. B., AuthorLastName, C. C., … (2025). Microstructural analysis of reduced multicomponent calcium ferrite using STEM-EDS and 3DAP. Tetsu-to-Hagane: Journal of the Iron and Steel Institute of Japan, Volume(Issue), page–page.