Prof. Yanwei Sui | Electron accumulation | Best Paper Award
Professor at China University of Mining and Technology in China.
Prof. Yanwei Sui 🎓 is a distinguished researcher and professor at the China University of Mining and Technology 🏛️. With a PhD from Harbin Institute of Technology (2009) and a visiting scholar tenure at the University of Auckland (2017) 🌍, his expertise lies in new energy materials ⚡ and alloy functionalization 🔬. His pioneering work spans supercapacitors, ion batteries, catalysts, hydrogen production, and graphene-based energy conversion. A prolific innovator, he holds over 50 patents 🏅 and has published 200+ SCI-indexed papers 📚. He is also a key figure in scientific organizations, contributing to advancements in energy storage and materials science. 🚀
Professional Profile
🔍 Summary of Suitability:
Prof. Yanwei Sui is highly suitable for the Best Paper Award due to his exceptional research contributions in materials science, energy storage, and nanotechnology 🔬⚡. With over 200 SCI-indexed papers 📚, his work demonstrates significant scientific impact, originality, and practical applications. His research on supercapacitors, ion batteries, catalysts, and hydrogen production has contributed to advancements in sustainable energy solutions 🌍.
Education 🎓
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PhD in Materials Science (2009) 🏅 – Harbin Institute of Technology
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Visiting Scholar (2017) 🌍 – University of Auckland
Experience 🏛️
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Professor 👨🏫 – China University of Mining and Technology
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Researcher in New Energy Materials ⚡ – Specializing in supercapacitors, ion batteries, catalysts, and hydrogen production
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Expert in Alloy Functionalization 🔬 – Focus on micro-plastic deformation, high-energy welding, additive manufacturing, and surface modification
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Published 200+ SCI-indexed papers 📚 – Major contributions in materials science and energy storage
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Holder of 50+ Invention Patents 🏅 – Innovations in advanced nanomaterials and energy applications
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Leader in Scientific Societies 🏆 – Director and key member of multiple Chinese scientific organizations
Professional Development 🚀📖
Prof. Yanwei Sui has made remarkable strides in materials science and energy research ⚡. He has led national key R&D projects 🏗️, contributed to government-funded initiatives, and collaborated with industries to enhance efficiency 💡. As an active editor and reviewer for scientific journals 📚, he ensures quality research dissemination. His membership in prestigious scientific organizations 🏅, including the Chinese Chemical Society, strengthens his professional network. With 50+ patents and 200+ SCI publications, he continuously drives innovation in energy storage and nanomaterials 🔬. His leadership in scientific committees fosters global advancements in sustainable technology 🌍.
Prof. Yanwei Sui’s research primarily focuses on new energy materials ⚡ and alloy functionalization 🔬. His work includes supercapacitors, ion batteries, catalysts, and hydrogen production through water decomposition 💧🔋. He is also an expert in graphene-based energy conversion, porous materials, and the recycling of waste for sustainability 🌱. In alloy research, he explores micro-plastic deformation, high-energy welding, electronic packaging, and surface modification 🏗️. His innovations contribute significantly to energy storage solutions, nanomaterials, and green technologies 🌍. With 200+ SCI papers 📚 and 50+ patents 🏅, he is advancing the future of sustainable energy and materials science 🚀.
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First Prize in Provincial & Ministerial Scientific and Technological Progress (2x) 🏅 – Recognized for outstanding contributions to materials science and energy research.
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Holder of 50+ Invention Patents 📜 – Innovations in nanomaterials, energy storage, and alloy functionalization.
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Published 200+ SCI Papers 📚 – High-impact research in top-tier scientific journals.
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Editorial Board Member & Reviewer ✍️ – Contributing to the advancement of scientific literature.
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Leadership Roles in Scientific Societies 🌍 – Director of the Chinese Chemical Society, Chinese Institute of Heat Treatment, and Chinese Foundry Society.
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Key Contributor to National R&D Projects 🚀 – Driving innovation in energy materials and sustainable technology.
Publication Top Notes:
📄 Nitrogen doping induces carbon micro-defect to improve potassium storage properties – Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025 | 📅 2025 | 🔗 0 citations
🔋 Al doped Mn₂O₃/2-Methylimidazole composites enhancing reaction kinetics for zinc ion batteries – Journal of Alloys and Compounds, 2025 | 📅 2025 | 🔗 0 citations
⚡ Oxygen Vacancy-Rich Cobalt-Doped MnO₂ Nanorods for Zn Ion Batteries – ACS Applied Materials and Interfaces, 2025 | 📅 2025 | 🔗 0 citations
🔋 Enhancing supercapacitor performance with rapid response kinetics: CoMn₂O₄/Mn₃O₄/MnAl₂O₄(OV) spinels oxygen vacancies heterostructures for self-supporting integrated independent electrodes – Journal of Alloys and Compounds, 2025 | 📅 2025 | 🔗 0 citations
🔬 Reversible anode constructed from three-dimensional graphene space confined CuBiS nanoflowers for high-performance Sodium-Ion batteries – Journal of Electroanalytical Chemistry, 2025 | 📅 2025 | 🔗 0 citations
🔄 Electrochemical oxidation-driven formation of nickel/nickel-based compounds on hollow carbon shells: Mechanistic insights and energy storage applications – Journal of Colloid and Interface Science, 2025 | 📅 2025 | 🔗 1 citation
⚛ Co₀.₂Sb₀.₂Fe₀.₂Mn₀.₂Ni₀.₂ high-entropy alloy carbon nanofiber as anode for lithium/potassium ion batteries – Journal of Materials Science, 2025 | 📅 2025 | 🔗 0 citations
🔋 Co doped V₂O₅ hollow microsphere as high-performance cathode for aqueous zinc-ion battery – Journal of Power Sources, 2025 | 📅 2025 | 🔗 0 citations
🧪 Cerium-doped Mn₂O₃ microspheres: a high-performance cathode material for aqueous zinc-ion batteries – New Journal of Chemistry, 2025 | 📅 2025 | 🔗 0 citations
🌍 Capture of CO₂ from N₂ and CH₄ over a wide temperature range on a robust MOF with Brønsted acidic and Lewis basic dual functional sites – Journal of Materials Chemistry A, 2025 | 📅 2025 | 🔗 0 citations
🎯 Conclusion:
Prof. Yanwei Sui’s high-impact research, innovation, and extensive publications make him an ideal candidate for the Best Paper Award. His contributions have advanced scientific knowledge and driven technological innovations in energy and materials science. 🌟