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【硕士调剂招生2026】安徽师范大学化学与材料科学学院国家优青课题组
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【硕士调剂招生2026】安徽师范大学化学与材料科学学院国家优青课题组 实验室负责人(导师)为安徽师范大学教授,功能分子固体教育部重点实验室副主任,获国家自然科学基金优秀青年科学基金、国家重点研发计划课题等资助。研究方向为:新能源材料与器件。以第一/通讯作者身份在Nature Materials、 Nature Communications、 Angew. Chem. Int. Ed.等期刊发表论文50余篇。 实验室经费充足,拥有便利的材料合成、结构表征和性能测试设备,包括进口电化学工作站、电化学原位表征装置、气相色谱、红外光谱仪、旋转圆盘电极、比表面积及孔径分析仪、多套管式炉等。课题组与多个国外研究团队存在长期合作,可推荐科研成果优异的同学出国交流,学校有公派出国交流或和国外联合培养的名额(教育部支持),欢迎具有浓厚科研兴趣的同学报名。 联系方式:18855336030,wangjinchem@ahnu.edu.cn 近期代表性学术论文(通讯作者) (1) Ordered Copper Triangular Atomic Sites for Industrial-Grade Electromethanation of CO2 via Self-Regulated Adsorption of Reactants, Angewandte Chemie International Edition, 2025, 64(37): e202511459. (2) Electrical Pulse Induced One-step Formation of Atomically Dispersed Pt on Oxide Clusters for Ultra-Low-Temperature Zinc-Air Battery, Angewandte Chemie International Edition, 2022, 61(51): e2022133. (3) Atomically Dispersed Ruthenium on Nickel Hydroxide Ultrathin Nanoribbons for Highly Efficient Hydrogen Evolution Reaction in Alkaline Media, Advanced Materials, 2021, 33(44): 2104764. (4) In Situ Implanting of Single Tungsten Sites into Defective UiO-66(Zr) by Solvent-Free Route for Efficient Oxidative Desulfurization at Room Temperature, Angewandte Chemie International Edition, 2021, 60(37): 20318-20324. (5) Manipulating Cu Nanoparticle Surface Oxidation States Tunes Catalytic Selectivity toward CH4 or C2+ Products in CO2 Electroreduction, Advanced Energy Materials, 2021, 11(36): 2101424. (6) Cu-MOFs Derived Porous Cu Nanoribbons with Strengthened Electric Filed for Selective CO2 Electroreduction to C2+ Fuels, Advanced Energy Materials, 2021, 11(42): 2102447. (7) Synergistic Palladium Single Sites and Nanoparticles Implanted Into a Novel Zr-Based Metal–Organic Framework via Solvent‐Free Processing for Upgrading Oxidative Desulfurization Performance, Advanced Functional Materials, 2024, 35:2414025. (8) Modulation of RuO2 Nanocrystals with Facile Annealing Method for Enhancing the Electrocatalytic Activity on Overall Water Splitting in Acid Solution, Advanced Science, 2025, 12(9): 2409249. (9) Defect-rich bimetallic UiO-66(Hf-Zr): Solvent-free rapid synthesis and robust ambient-temperature oxidative desulfurization performance, Applied Catalysis B: Environmental, 2021, 299: 120659. (10) Negative-pressure-induced enhancement in a freestanding ferroelectric, Nature Materials, 2015, 14(10): 985-990. |
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