种晓丹老师简介
作者: 发布时间:2026-03-11
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博士/讲师/硕士生导师 Email:xiaodanchong123@126.com | 招生专业:物理化学 科研方向:纳米催化剂的设计及有机电化学合成 |
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| 讲授课程 《化工专业英语》、《化工原理实验》 教育经历 2022.08-至今,聊城大学化学化工学院,讲师; 2016.9-2022.06,天津大学理学院,物理化学,硕博连读; 2011.9 - 2015. 7,济南大学化学与化工学院,应用化学,学士。 科研项目 1. 国家自然科学基金:22302086,氧化石墨对芳香化合物的选择性卤化与析氢及转移氢化耦合,2024.01-2026.12,在研,主持; 2. 山东省自然科学基金:ZR202212010354,功能性碳材料调控卤化反应与析氢及转移氢化耦合应用研究,2024.01-2026.12,在研,主持; 3. 山东省青年创新团队:2023KJ205,碳基复合电催化体系构建及其有机物选择性卤化与析氢/氢化耦合,2024.01-2026.12,在研,主持; 4. 聊城大学科研启动基金, 在研,主持。 获奖情况 2023年度,聊城大学“光岳新秀”。 科研成果 1.Xiaodan Chong#, Cuibo Liu#, Yi Huang, Chenqi Huang, Bin Zhang*, Potential-Tuned Selective Electrosynthesis of Azoxy-, Azo- and Amino-Aromatics over a CoP Nanosheet Cathode, Natl. Sci. Rev, 2020, 7(2), 285-295. (SCI 一区,影响因子IF:17.1) 2.Xiaodan Chong#, Cuibo Liu#, Changhong Wang, Rong Yang, Bin Zhang*, Integrating Hydrogen Production and Transfer Hydrogenation with Selenite Promoted Electrooxidation of α-Nitrotoluenes to E-Nitroethenes, Angew. Chem. Int. Ed, 2021, 60(40), 22010-22016. (SCI 一区,IF:16.9)
3.Yi Huang#, Xiaodan Chong#, Cuibo Liu, Yu Liang, Bin Zhang*, Boosting Hydrogen Production by Anodic Oxidation of Primary Amines over a NiSe Nanorod Electrode, Angew. Chem. Int. Ed, 2018, 57, 13163-13166.(SCI 一区,IF:16.9)
4. Niantao Yao , Jiaojiao Jiang , Huiying Sun , Zhiyou Xu , Xiaodan Chong* , Cheng Yi* , Liang Zhao*, Directional design and structural elucidation of intrachain electron transfer in [Fe2Co] Chains with switchable magnetoelectric bistability, Journal of Molecular Structure, 2026, 1350, 144097. (SCI 二区,IF:4.7)
5. Fei Nie, Shuming Chu*, Jinsheng Zhao*, Xiaodan Chong*, Enhanced oxygen evolution reaction via gallium and boron co-doping in NiFe LDH: Accelerated surface reconstruction and proton transfer, International Journal of Hydrogen Energy, 2025, 192, 152355. (SCI 二区,IF:8.3)
6. Yikai Yang, Wenhang Wang, Wei Jiang, Fei Nie, Huaxing Li, Xiaodan Chong*, Dongmei Lv*, Shijie Qu*, Jinsheng Zhao*, Synergistic active site and mass transport engineering in N-doped porous carbon nanosheets for high-efficiency CO2 electroreduction, Applied Surface Science, 2025, 711, 164054. (SCI 二区,IF:6.9) | |||