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Meiyu Zhang, Qiyu Hu, Kangwei Ma , Yong Ding*, Can Li*, Pyroelectric effect in CdS nanorods decorated with a molecular Co-catalyst for hydrogen evolution, Nano Energy 2020, 73, 104810 Xiangyu Meng, Chenchen Zhang, Congzhao Dong, Wanjun Sun, Dong Ji, Yong Ding*, Carbon quantum dots assisted strategy to synthesize Co@NC for boosting photocatalytic hydrogen evolution performance of CdS, Chem. Eng. J. 2020, 389, 124432. Wanjun Sun , Xiangyu Meng, Chunjiang Xu, Junyi Yang, Xiangming Liang, Yinjuan Dong, Congzhao Dong, Yong Ding*, Amorphous CoOx coupled carbon dots as a spongy porous bifunctional catalyst for efficient photocatalytic water oxidation and CO2 reduction, Chin. J. Catal., 2020, 41, 1826-1836. Chunjiang Xu, Wanjun Sun, Yinjuan Dong, Congzhao Dong, Qiyu Hu, Baochun Ma, Yong Ding*, Graphene oxide-molecular Cu porphyrin integrated BiVO4 photoanode for improved photoelectrochemical water oxidation performance, J. Mater. Chem. A, 2020, 8, 4062-4072. Xiaohu Cao, Chunjiang Xu, Xiangming Liang, Jiarui Ma, Meie Yue,Yong Ding*, Rationally Designed/Assembled Hybrid BiVO4-Based Photoanode for Enhanced Photoelectrochemical Performance, Appl. Catal.B.-Environ., 2020, 260, 118136. Yifan Wang, Xiaohu Cao, Qiyu Hu, Xiangmin Liang, TianTian, Junqi Lin, Meie Yue, Yong Ding*,FeOx Derived From an Iron-containing Polyoxometalate Boosting the Photocatalytic Water Oxidation Activity of Ti3+ Doped TiO2, ACS Appl. Mater. Interfaces, 2019, 11, 23135-23143. Xiaohu Cao, Yifan Wang, Junqi Lin, Yong Ding*, Ultrathin CoOx Nanolayers Derived from Polyoxometalate for Enhanced Photoelectrochemical Performance of Hematite Photoanode, J. Mater. Chem. A, 2019, 7, 6294-6303. Junqi Lin, Xiangyu Meng, Min Zheng, Baochun Ma*, Yong Ding*, Insight into a hexanuclear cobalt complex: strategy to construct efficient catalysts for visible light-driven water oxidation, Appl. Catal.B.-Environ., 2019, 241, 351-358. Tian Tian, Hong Gao, Xichen Zhou, Lirong Zheng, Jianfeng Wu, Kai Li, and Yong Ding*, Study the Active Sites in Porous Nickel Oxide Nanosheets by Manganese Modulation for Enhanced Oxygen Evolution Catalysis, ACS Energy Lett. , 2018, 3, 2150-2158. Min Zheng, Yong Ding*, Xiaohu Cao, Tian Tian, Junqi Lin, Homogeneous and heterogeneous photocatalytic water oxidation by polyoxometalates containing the most earth-abundant transition metal, iron, Appl. Catal.B.-Environ., 2018, 237, 1091-1100. Xichen Zhou, Zhen Liu, Yifan Wang, Yong Ding*, Facet effect of Co3O4 nanocrystals on visible-light driven water oxidation, Appl. Catal.B.-Environ., 2018, 237, 74-84. Li Yu, Junqi Lin, Min Zheng, Mindong Chen and Yong Ding *, Homogeneous electrocatalytic water oxidation at neutral pH by a robust trinuclear copper (Ⅱ)-substituted polyoxometalate, Chem.Commun.,2018, 54, 354-357. Min Zheng, Yong Ding*, Li Yu, Xiaoqiang Du, Yukun Zhao, In Situ Observation and Growth of Pristine Cobalt Sulfide acted as Bifunctional Photocatalyst for Hydrogen and Oxygen Evolution, Adv. Funct. Mater., 2017, 27, 1605846. Jingwei Huang, Yan Zhang, Yong Ding*, Rationally Designed/Constructed CoOx/WO3 Anode for Efficient Photoelectrochemical Water Oxidation, ACS Catal., 2017, 7, 1841-1845. Li Yu, Yong Ding*, Min Zheng, Polyoxometalate-Based Manganese Clusters as Catalysts for Efficient Photocatalytic and Electrochemical Water Oxidation, Appl. Catal . B-Environ., 2017, 209, 45-52. Yan Zhang, Jingwei Huang, Yong Ding,* Porous Co3O4/CuO hollow polyhedral nanocages derived from metal-organic frameworks with heterojunctions as efficient photocatalytic water oxidation catalysts, Appl. Catal . B.-Environ., 2016, 198,447-456. Xiaoqiang Du, Jinli Zhao, Jiaqi Mi, Yong Ding*, Panpan Zhou, Baochun Ma, Junwei Zhao, * Jie Song*, Efficient photocatalytic H2 evolution catalyzed by an unprecedented robust molecular semiconductor {Fe11} nanocluter without cocatalysts at neutral conditions, Nano Energy, 2015, 16, 247-255. Fangyuan Song, Yong Ding*, Baochun Ma*, Changming Wang, Qiang Wang, Xiaoqiang Du, Shao Fu and Jie Song*, K7[CoIIICoII(H2O)W11O39]: a molecular mixed-valence Keggin polyoxometalate catalyst of high stability and efficiency for visible light-driven water oxidation, Energy Environ. Sci., 2013, 6, 1170-1184.



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