Hongcai Gao | Nanomaterials for Energy | Research Excellence Award

Prof. Dr. Hongcai Gao | Nanomaterials for Energy | Research Excellence Award

Professor | Beijing Institute of Technology | China

Prof. Dr. Hongcai Gao is a highly cited energy materials scientist with over 12,440 Google Scholar citations, an h-index of 54, an i10-index of 74, and 105+ peer-reviewed publications. His research focuses on electrochemical energy storage, including lithium-ion, sodium-ion, potassium-ion, and solid-state batteries, with strong emphasis on cathode and anode materials, electrolytes, interfacial chemistry, and high-entropy material design. He has delivered influential research outcomes published in top-tier journals such as Advanced Energy Materials, Energy Storage Materials, Nano Energy, Chemical Engineering Journal, ACS Applied Materials & Interfaces, and Journal of Materials Chemistry A. Prof. Dr. Hongcai Gao has contributed to national and regional competitive research projects, generated high-impact R&D innovations, and co-authored authoritative book chapters on electrochemical energy storage. His work has significantly advanced multielectron redox chemistry, interfacial stabilization strategies, and scalable battery technologies. He is consistently recognized among the World’s Top 2% Scientists, serves on editorial boards, acts as a reviewer for leading journals, and plays an active role in international conferences and scientific innovation leadership.

Citation Metrics (Google Scholar)

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12,440

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105

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54

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74

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Featured Publications

Low-cost high-energy potassium cathode
– Journal of the American Chemical Society, 2017 | Ciations: 572

Muhammad Ibrar | Nanotechnology in Energy | Young Scientist Award

Mr. Muhammad Ibrar | Nanotechnology in Energy | Young Scientist Award

PhD | USTC (University of Science and Technology of China), GIEC (Guangzhou Institute of Energy Conversion) and CAS (Chinese Academy of Sciences) | Pakistan

Mr. Muhammad Ibrar is an emerging researcher with notable contributions to green nanotechnology, water purification, and advanced functional nanomaterials. His publication record spans bio-mediated synthesis of metal and metal-oxide nanoparticles, electrochemical materials, photocatalysts, and bioactive nanostructures, reflected in 111 citations, 15 documents, an h-index of 5, and i10-index of 3. His works include plant-assisted fabrication of Mn₃O₄, Cr₂O₃, NiO, and hybrid nanocomposites demonstrating significant electrochemical, antibacterial, cytotoxicity, and environmental remediation performance. He has contributed to impactful research on biochar-supported nanocomposites for heavy-metal removal, nano-emulsions for wound healing, multifunctional semiconductor–metallic oxide systems for energy devices, and clay-based/ polymeric membrane nanocomposites for dye and pollutant degradation. His additional work on CNT-decorated ferrites, graphene-based nanomaterials, and electrodialysis membrane engineering further extends his influence in energy storage, photocatalysis, and sustainable water treatment technologies.

Citation Metrics (Google Scholar)

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111

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15

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5

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3

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i10-index

View Scopus Profile   View ORCID Profile   View Google Scholar

Featured Publications

Clay-based nanocomposites: potential materials for water treatment applications
– Advanced Research in Nanosciences for Water Technology, 2019 | Citations: 8