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董奇兵
发布日期:2026年06月30日 点击:

     

董奇兵

     

出生年月

19964

籍  贯

陕西汉中

民  族

政治面貌

中共党员

学历/学位

研究生/博士

     

 

专业技术

     

讲师/硕导

研究领域

光(电)催化技术在能源转化和环境修复领域的应用

主讲课程

《仪器分析》《分析化学》

办公地点

7411

教育背景

时间段

学校

专业

学位

2014.09-2018.06

渭南师范学院

化学

学士

2018.09-2021.06

西北师范大学

化学工程

硕士

2021.09-2024.12

陕西科技大学

化学工程与技术

博士

工作经历

2025.01-至今

湖南工学院

专任教师

教学科研

[1] 2026年主持湖南省自然科学基金高校联合项目2026JJ90069)

[2] 2026年主持湖南工学院化学工程与技术学科开放课题(XK20260303)

[3] 2025年主持湖南省教育厅科学研究优秀青年项目(25B0836)

[4] 2023年参与国家外专局高端外国专家创新团队项目G2023041021L

[5] 2022年参与国家自然科学基金国际合作研究项目52161145409

荣誉奖励

[1] 衡阳市高层次人才C类人才

出版情况

[1]  Qibing Dong, Ximing Li, Ning Liu*, Xinxin Liang, Xue He, Shuilin Liu, Xinde Tang, Chuanyi Wang*. p-Aminobenzoic acid-mediated charge transfer between Au nanoclusters and ZrO clusters in a porphyrin-based metal-organic framework for enhanced photocatalytic N2 fixation, Chemical Engineering Journal, 2026, 543: 17600.

[2] He Xue, Qibing Dong*, Ke Zhao, Haitao Ren, Jiangyushan Liang, Xiaolin Zhu, Zihui Zhao, and Chuanyi Wang*. Hydroxyl Functionalization Regulates the Fe‐Site Microenvironment of MIL‐101 (Fe) for Coupled Two‐Electron O2 Reduction and Photocatalytic Self‐Fenton Oxidation, Advanced Functional Materials, 2026: e76216.

[3]  Qibing Dong, Ximing Li, Yanyan Duan, Xue He, Xinxin Liang, Feng Yu, Chuanyi Wang. Dispersing Au nanoclusters on porphyrin-based metal-organic framework photocatalyst for enhanced proton supply to the Fe-N-N * sites in N2 fixation, Applied Catalysis B: Environment and Energy, 2025, 366: 125042.

[4]  Qibing Dong, Ximing Li, Yanyan Duan, Qingyun Tian, Xinxin Liang, Yiyin Zhu, Ling Tian, Junjun Wang, A Sial, Yongqian Cui, Ke Zhao, and Chuanyi Wang, Recent advances in core-shell organic framework-based photocatalysts for energy conversion and environmental remediation. Journal of Energy Chemistry, 2024, 95,168-199.

[5]  Qibing Dong, Ximing Li, Jinhua Sun, Yiyin Zhu, Xinxin Liang, Haitao Ren, Abdelkader Labidi, Dong Wang, Fei Li, and Chuanyi Wang, Regulating concentration of surface oxygen vacancies in Bi2MoO6/Bi-MOF for boosting photocatalytic ammonia synthesis, Journal of Catalysis, 2024, 433,115489.

[6]   Ximing Li#, Qibing Dong#, Qingyun Tian, Atif Sial, Hui Wang, Hongli Wen, Bao Pan, Ke Zhang, Jiani Qin, and Chuanyi Wang, Recentadvance in metal- and covalent-organic framework-based photocatalysis for hydrogen evolution, Materials Today Chemistry, 2022, 26, 101037.

[7]   Qibing Dong, Chao Shuai, Zunli Mo, Ruibin Guo, Nijuan Liu, Guigui Liu, Jia Wang, Wentong Liu, Ying Chen, Jingjing Liu, Yangyang Jiang, and Qinqin Gao, The in situ derivation of a NiFe-LDH ultra-thin layer on Ni-BDC nanosheets as a boosted electrocatalyst for the oxygen evolution reaction, CrystEngComm, 2021, 23, 1172.

[8]    Qibing Dong, Chao Shuai, Zunli Mo, Nijuan Liu, Guigui Liu, Jia Wang, Hebing Pei, Qianqian Jia, Wentong Liu, and Xudong Guo, CeO2 nanoparticles@NiFe-LDH nanosheet heterostructure as electrocatalysts for oxygen evolution reaction, Journal of Solid State Chemistry, 2021, 296, 121967.

[9]   Qibing Dong, Chao Shuai, Zunli Mo, Zhenyu Liu, Guigui Liu, Jia Wang, Ying Chen, Wentong Liu, Nijuan Liu, and Ruibin Guo, Nitrogen-doped graphene quantum dots anchored on NiFe layered double-hydroxide nanosheets catalyze the oxygen evolution reaction, New Journal of Chemistry, 2020, 44, 17744.











 

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