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昝灵兴
2024-03-25 11:04  

昝灵兴

副教授

博士(后)

电 话:0911-2332037

传 真:

电子信箱:zanlingxing@yau.edu.cn

出生年月:1984.06

研究方向:电化学催化与储能

毕业学校:德国波恩大学

职 务:

研究工作简介

个人简介:2019年10月至2021年10月在中国科学院大连化学物理研究所,开展博士后研究工作。

2013年6月至2017年9月在德国波恩大学攻读博士学位,于2017年9月获得德国波恩大学自然科学博士学位。

研究方向:电化学催化与储能。主要包括电解水制氢和制氧、电化学吸附和沉积现象、金属离子电池和金属空气电池等研究领域。

科研情况:主持国家自然科学基金地区项目1项,陕西省科技厅自然科学项目1项,陕西省教育厅重点实验室项目1项,榆林市科技局产学研项目1项,延安大学校级项目2项;参与研究国家自然科学基金基础科学中心项目1项,陕西省科技厅面上项目1项,德国联邦教育及研究部项目(BMBF)2项。目前已在National Science Review, Angewandte Chemie International Edition, Energy & Environmental Science, Nano Research, ACS Applied Materials & Interfaces, Inorganic chemistry frontiers, Electrochimica Acta等国际期刊上发表SCI收录论文40余篇,核心4篇,专利6项,发表ECSISEGDCh等国际会议论文6篇,参加国际会议3次。

2023年入选延安市中青年科技创新领军人才。

开设课程:《物理化学》《工程热力学》《物理化学实验》

代表性成果

(1) Di Li; Lingxing Zan; Shiming Chen; Zhang-Jie Shi; Ping Chen; Zhenfeng Xi; Dehui Deng*; Direct conversion of N2 and O2: status, challenge, and perspective, National Science Review, 2022, 9: nwac042. (共一)

(2) Lingxing Zan; Hatem M. A. Amin*; Ehab Mostafa; Abdelaziz A. Abd-El-Latif; Shahid Iqbal; Helmut Baltruschat*; Electrodeposited cobalt nanosheets on smooth silver as a bifunctional catalyst for OER and ORR: in situ structural and catalytic characterization, ACS Applied Materials & Interfaces, 2022, 14: 55458-55470.

(3) Lingxing Zan; Hongling Zhang; Zhangwen Ye; Qingbo Wei; Hongliang Dong; Shiwen Sun; Qiang Weng; Xin Bo; Huicong Xia*; Yibing Li*; Feng Fu*; A solvent-induced crystal-facet effect of nickel- cobalt layered double hydroxides for highly efficient overall water splitting, Inorganic chemistry frontiers, 2022, 9: 5527-5537

(4) Xin Bo*,†; Lingxing Zan; Rouna Jia; Kamran Dastafkan; Chuan Zhao*, The nature of synergistic effects in transition metal oxides/in-situ intermediate-hydroxides for enhanced oxygen evolution reaction, Current Opinion in Electrochemistry, 2022, 34: 100987 (共一)

(5) Huicong Xia; Lingxing Zan; Gan Qu; Yunchuan Tu; Hongliang Dong; Yifan Wei; Kaixin Zhu; Yue Yu; Yongfeng Hu; Dehui Deng*; Jianan Zhang*; Evolution of a solid electrolyte interphase enabled by FeNX/C catalysts for sodium-ion storage, Energy & Environmental Science, 2022, 15: 771-779.

(6) Huicong Xia; Lingxing Zan; Pengfei Yuan; Gan Qu; Hongliang Dong; Yifan Wei; Yue Yu; Zeyu Wei; Wenfu Yan; Jin-Song Hu; Dehui Deng*; Jianan Zhang*; Evolution of stabilized 1T-MoS2 by atomic-interface engineering of 2H-MoS2/Fe-Nx towards enhanced sodium ion storage, Angewandte Chemie International Edition, 2023, 62: e202218282.

(7) Yifan Wei§; Lingxing Zan§; Huicong Xia*; Wenfu Yan; Jia-Nan Zhang*; Mechanism of interfacial effects in sodium-ion storage devices, Nano Research, 2024, 17: 1313-1326. (共一)

(8) Zan Lingxing; Zhang Hongling; Bo Xin; Zhao Yuyue; Tian Huanqing; Hao Chen; Wei Qingbo; Tang Haoqing; Fu Feng*; Investigation of the synergistic effect on cobalt oxide modified silver surface for electrocatalytic hydrogen evolution reaction, Journal of Alloys and Compounds, 2021, 869: 159324.

(9) Zan Lingxing; Zhang Hongling; Tang Haoqing; Wei Qingbo; Zhao Yuyue; Wang Zenglin; Fu Feng*; Electrochemical modification and tuning Ni/Ni(OH)2-Ag heterogeneous interface for efficient electrocatalytic hydrogen and oxygen evolution reactions, Electrochimica Acta, 2020, 341: 136051.

(10) Wei Qingbo; Ye Zhangwen; Ren Xianpei*; Li Xue; Yin Mingli; Zan Lingxing*; Fu Feng*; Core-shell CoS2@MoS2 nanoparticles as an efficient electrocatalyst for hydrogen evolution reaction, Journal of Alloys and Compounds, 2020, 835: 155264.

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