副教授

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宁星铭

发布人:  发布时间:2024-11-09  点击:[]

宁星铭 副教授

    Ass. Prof. Xingming Ning

   Tel: +86-29-

   E-mail: ningxingming@snnu.edu.cn

学习及工作经历:

  天津大学博士学位(2021

陕西师范大学(2021-至今

研究领域:

  1. 液晶材料的结构调控,探究盘状液晶结构和性能的构效关系

  2. 光电化学水分解

  3. 有机小分子催化氧化

奖励及荣誉:

2026,第七届陕西省高校青年教师教学竞赛工科组一等奖

2025Nano Research Energy 2025 年学术新星优秀奖

2023,陕西师范大学第六届“红烛杯”教师课堂教学创新大赛一等奖

2023年,陕西师范大学第十五届青年教师教学基本功大赛理科组,一等奖

2026-2027Materials Futures期刊青年编委

2026-2027Journal of Electrochemistry期刊青年编委

2025-2027Eco Energy期刊青年编委

2025-2027Carbon Neutralization期刊青年编委

主持的科研项目:

1.中央高校项目(优秀青年人才项目),软界面调控对光电化学水分解研究,2024/01-2026/12

2.国家自然科学基金青年基金项目,金属诱导电荷转移的界面调控对光电化学水分解研究,2023/01-2025/12

代表性成果(包括论文、专利、著作等):

  1. Ligand modulation of active interfaces to promote photoelectrochemical water splitting, Meihua Li, Lan Yao, Li Xu, Jingjing Quan, Saqib Mujtaba, Chenglong Li, Xingming Ning*, Pei Chen*, Zhongwei An, Xinbing Chen*, J. Colloid Interface Sci., 2026, 703, 139126.

        2. Insight into CoPi-mediated heterointerfaces for highly efficient photoelectrochemical water splitting, Saqib Mujtaba, Chenglong Li, Jingjing Quan, Asma Yasmin, Li Xu, Xingming Ning*, Pei Chen*, Zhongwei An, Xinbing Chen*, Nano Res., 2026, 19, 94907793.

        3. Engineering semiconductor/electrocatalyst interface for efficient photoelectrochemical water splitting, Fangming Zhao, Xingming Ning*, Li Xu, Pei Chen*, Zhongwei An and Xinbing Chen*, Chin. Chem. Lett., 2026, 37, 112026.

        4. Activation of Semiconductor/Electrocatalyst/Electrolyte Interfaces Through Ligand Engineering for Boosting Photoelectrochemical Water Splitting, Chenglong Li, Saqib Mujtaba, Jingjing Quan, Li Xu, Xingming Ning*, Pei Chen*, Zhongwei An, Xinbing Chen*, Adv. Funct. Mater., 2025, 35, 2501262.

        5. Unlocking the Potential ofPhotoelectrochemical Water Splitting via Heterointerface Charge Polarization, Li Xu, Xingming Ning*, Jingjing Quan, Chenglong Li, Lan Yao, Qiang Weng, Pei Chen,* Zhongwei An, and Xinbing Chen*, Adv. Sci., 2025, 12, 2502384.

        6. Incorporation of sulfur vacancies in the ZnIn2S4 photoanode for highly efficient photoelectrochemical water splitting and urea oxidation, Peiyue Hu, Chuanyi Ruan, Jingjing Quan, Chenglong Li, Xingming Ning*, Pei Chen*, Zhongwei An, Xinbing Chen*, J. Mater. Chem. A, 2024, 13 4496-4502.

        7. Unveiling Fast Charge Transfer Dynamics at Semiconductor/Electrocatalyst/Electrolyte Dual Interfaces via Boron Engineering for Efficient Water Splitting, Wei Zhao, Ze Wang, Hui Huang, Yaorong He, Shaoyu Zou, Lin Zhu, Hui Xiao, Xingming Ning*, Wei Luo, Peiyao Du*, Xiaoquan Lu*, Adv. Energy Mater., 2025, 15, e04275.

        8. In Operando Visualization of Charge Transfer Dynamics in Transition Metal Compounds on Water Splitting Photoanodes, Xingming Ning, Shengya Zhang, Dan Yin, Peiyao Du*, and Xiaoquan Lu*, Adv. Energy Mater.,2025, 15, 2405137.

        9. Modulation of charge-transfer behavior via adaptive interface treatment for efficient photoelectrochemical water splitting, Jingjing Quan, Jing Wang, Kunlin Hai, Xingming Ning*, Xinbing Chen*, J. Mater. Chem. A, 2024, 12, 6405-6411.

       10. Low oxidation state engineering in transition metal-based interfacial regulation layer accelerates charge transfer kinetics toward enhanced photoelectrochemical water splitting, Li Xu, Meihua Li, Fangming Zhao, Jingjing Quan, Xingming Ning*, Pei Chen, Zhongwei An, Xinbing Chen*, Appl. Catal. B Environ. Energy, 2024, 359, 124503.

        11. Engineering the transition metal hydroxide-photoanode interface with a highly crystalline mediator for efficient photoelectrochemical water splitting, Meihua Li, Mujtaba Saqib, Li Xu, Chenglong Li, Jingjing Quan, Xingming Ning*, Pei Chen*, Qiang Weng, Zhongwei An, Xinbing Chen*, J. Mater. Chem. A, 2024, 12, 19259-19267.

        12. Insight into the Transition-Metal Hydroxide Cover Layer for Enhancing Photoelectrochemical Water Oxidation, Xingming Ning, Peiyao Du, Zhengang Han, Jing Chen, Xiaoquan Lu*, Angew. Chem. Int. Ed., 2021, 60, 3504-3509.

        13.宁星铭,许丽,李美华,陈新兵,安忠维,陈沛。一种基于CeOx调控单元抑制半导体/电催化剂界面电荷复合的方法,发明专利,专利号:ZL 2023 1 0524532.4