蔡金孟,副教授(郑州大学青年拔尖)
联系方式:caijinmeng@zzu.edu.cn
学习经历:
1. 2012年9月-2018年6月,天津大学化工学院,博士
2. 2008年9月-2012年6月,武汉工程大学化工与制药学院,学士
工作经历:
2023年4月-至今,郑州大学化学学院,副教授
2020年5月-2023年3月,郑州大学化学学院,讲师
2018年9月-2020年1月,西湖大学,助理研究员
研究方向:
光/电催化硝氮转化
主持项目:
1. 国家自然科学基金青年项目(2022),项目编号:22205213,30万元,在研,主持
2. 中国博士后科学基金第14批特别资助(站中) (2021),项目编号:2021T140614,18万元,结项,主持
3. 河南省自然科学基金青年项目(2021),项目编号:222300420287,5万元,结项,主持
4. 中国博士后科学基金第68批面上项目(2020),项目编号:2020M682332,8万元,结项,主持
5. 河南省博士后科研启动基金(2020),项目编号:202003015,5万元,结项,主持
代表论文:
1. Liu, L.; Zheng, S.-J.; Chen, H.; Cai, J.*; Zang, S.-Q.*, Tandem Nitrate‐to‐Ammonia Conversion on Atomically Precise Silver Nanocluster/MXene Electrocatalyst. Angew. Chem. Int. Ed. 2024, 63 (8), e202316910.
2. Cai, J.; Huang, J.; Cao, A.; Wei, Y.; Wang, H.; Li, X.; Jiang, Z.; Waterhouse, G. I. N.; Lu, S.; Zang, S.-Q.*, Interfacial hydrogen bonding-involved electrocatalytic ammonia synthesis on OH-terminated MXene. Appl. Catal. B-Environ. 2023, 328, 122473.
3. Wang, H.; Huang, J.; Cai, J.*; Wei, Y.; Cao, A.; Liu, B.; Lu, S.*, In Situ/Operando Methods for Understanding Electrocatalytic Nitrate Reduction Reaction. Small Methods 2023, 7 (7), e2300169.
4. Huang, J.; Yu, J.; Lu, X.; Wei, Y.; Song, H.; Cao, A.; Cai, J.*; Zang, S.-Q.; Lu, S.*, Regulating the spin density of CoIII using boron-doped carbon dots for enhanced electrocatalytic nitrate reduction. Inorg. Chem. Front. 2023, 10 (13), 3955-3962.
5. Wang, Y. M.#; Cai, J.#; Wang, Q. Y.; Li, Y.; Han, Z.; Li, S.; Gong, C. H.; Wang, S.*; Zang, S. Q.*; Mak, T. C. W., Electropolymerization of metal clusters establishing a versatile platform for enhanced catalysis performance. Angew. Chem. Int. Ed. 2022, 61 (10), e202114538.
6. Cai, J.; Wei, Y.; Cao, A.; Huang, J.; Jiang, Z.; Lu, S.; Zang, S.-Q.*, Electrocatalytic nitrate-to-ammonia conversion with ~100% Faradaic efficiency via single-atom alloying. Appl. Catal. B-Environ. 2022, 316, 121683.
7. Lu, X.; Yu, J.; Cai, J.*; Zhang, Q.; Yang, S.; Gu, L.; Waterhouse, G. I. N.; Zang, S.-Q.; Yang, B.; Lu, S.*, Exclusive nitrate to ammonia conversion via boron-doped carbon dots induced surface Lewis acid sites. Cell Rep. Phys. Sci. 2022, 3 (7), 100961.
8. Cai, J.; Cao, A.; Wang, Z.; Lu, S.; Jiang, Z.; Dong, X.-Y.; Li, X.*; Zang, S.-Q.*, Surface oxygen vacancies promoted Pt redispersion to single-atoms for enhanced photocatalytic hydrogen evolution. J. Mater. Chem. A 2021, 9 (24), 13890-13897.
9. Lu, X.; Song, H.; Cai, J.*; Lu, S.*, Recent development of electrochemical nitrate reduction to ammonia: A mini review. Electrochem. Commun. 2021, 129, 107094.
10. Cai, J.; Cao, A.; Huang, J.; Jin, W.; Zhang, J.; Jiang, Z.; Li, X.*, Understanding oxygen vacancies in disorder-engineered surface and subsurface of CaTiO3 nanosheets on photocatalytic hydrogen evolution. Appl. Catal. B-Environ. 2020, 267, 118378.
11. Cai, J.; Wu, M.; Wang, Y.; Zhang, H.; Meng, M.; Tian, Y.; Li, X.*; Zhang, J.; Zheng, L.; Gong, J.*, Synergetic Enhancement of Light Harvesting and Charge Separation over Surface-Disorder-Engineered TiO2 Photonic Crystals. Chem 2017, 2 (6), 877-892.
12. Cai, J.; Wang, Y.; Zhu, Y.; Wu, M.; Zhang, H.; Li, X.*; Jiang, Z.; Meng, M., In Situ Formation of Disorder-Engineered TiO2(B)-Anatase Heterophase Junction for Enhanced Photocatalytic Hydrogen Evolution. ACS Appl. Mater. Interfaces 2015, 7 (45), 24987-24992.
13. Cai, J.; Zhu, Y.; Liu, D.; Meng, M.*; Hu, Z.; Jiang, Z., Synergistic Effect of Titanate-Anatase Heterostructure and Hydrogenation-Induced Surface Disorder on Photocatalytic Water Splitting. ACS Catal. 2015, 5 (3), 1708-1716.