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熊胜林
教授 博士生导师 硕士生导师
性别:男
毕业院校:中国科学技术大学
学历:博士研究生毕业
学位:理学博士学位
在职信息:在职
所在单位:化学与化工学院
入职时间: 2011-07-13
所属院系: 化学与化工学院
学科:无机化学
办公地点:山东大学中心校区化学与化工学院老晶体北楼102室
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[1] 宗金贵. Engineering twin structures and substitutional dopants in ZnSe0.7Te0.3 anode material for enhanced sodium storage performance. 自然通讯, 16, 2025.
[2] 宗金贵. Effect of Combination Model of MoTe2 and MXene Layers on Sodium Ion Storage. ADVANCED MATERIALS, 2025.
[3] 袁佳. Alloying Strategy Regulating Size and Electronic Structure of Mo0.25Nb0.75Se2 to Achieve High-Performance Lithium-Sulfur Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024.
[4] 宋宁. Phase and Orbital Engineering Effectuating Efficient Adsorption and Catalysis toward High-Energy Lithium-Sulfur Batteries. ADVANCED MATERIALS, 2025.
[5] Bin Li. P-doped RuSe2 on Porous N-doped Carbon Matrix as Catalysts for Accelerated Sulfur Redox Reactions. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024.
[6] Zhengchunyu Zhang. Synchronous Regulation of d-Band Centers in Zn Substrates and Weakening Pauli Repulsion of Zn ions using the Ascorbic Acid Additive for Reversible Zinc Anodes. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024.
[7] 魏传亮. Rapid Growth of Bi2Se3 Nanodots on MXene Nanosheets at Room Temperature for Promoting Sulfur Redox Kinetics. Inorganic chemistry, 2024.
[8] 魏传亮. One-step growth of ultrathin CoSe2 nanobelts on N-doped MXene nanosheets for dendrite-inhibited and kinetic-accelerated lithium-sulfur chemistry. science bulletin, 2024.
[9] Fan Liu. Ordered Vacancies as Sodium Ion Micropumps in Cu-Deficient Copper Indium Diselenide to Enhance Sodium Storage. ADVANCED MATERIALS, 2024.
[10] Wang, Peng. Insights into the Optimization of Catalytic Active Sites in Lithium-Sulfur Batteries. ACCOUNTS OF CHEMICAL RESEARCH, 2024.
[11] 张华. Atomically Dispersed Co–Ru Dimer Catalyst Boosts Conversion of Polysulfides toward High-Performance Lithium–Sulfur Batteries. 先进材料, 2500950, 2025.
[12] 张华. Boosted electrosynthesis of hydrogen peroxide on isolated metal sites through second-shell modulation. NANO RESEARCH, 18, 2025.
[13] 王鹏. Niobium Phosphide-Induced Sulfur Cathode Interface with Fast Lithium-Ion Flux Enables Highly Stable Lithium-Sulfur Catalytic Conversion. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2025.
[14] Li, Bin. Origin of Phase Engineering CoTe2 Alloy Toward Kinetics-Reinforced and Dendrite-Free Lithium?Sulfur Batteries. ADVANCED MATERIALS, 2023.
[15] Zhang, Zhengchunyu. Ligand Engineering Regulation toward Zn Ions and Zn Substrate for All-Climate Zn Metal Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2025.
[16] 王鹏. WP Nanocrystals on N,P Dual-Doped Carbon Nanosheets with Deeply Analyzed Catalytic Mechanisms for Lithium-Sulfur Batteries. CCS CHEMISTRY, 5, 397-411, 2023.
[17] 王正冉. Ultrasmall CoFe Bimetallic Alloy Anchored on Fluoride-Free MXene by One-Pot Etching Strategy for the Barrier-Adsorption-Catalyst Functions of Polysulfides in Lithium-Sulfur Batteries. Advanced Functional Materials, 2024.
[18] 李媛. Boosting polysulfides conversion kinetics through heterostructure optimization and electrons redistribution for robust lithium-sulfur batteries. Chemical Engineering Journal, 497, 2024.
[19] 刘俊杰. Advanced electrolytes for sodium metal batteries under extreme conditions. 能源存储材料, 72, 2024.
[20] 倪志玮. Tri-anions regulated solvation structure in intrinsically nonflammable phosphate-based electrolytes for stable lithium metal batteries. 能源存储材料, 71, 2024.
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