Cd(Eu)Se/CdS/CdZnS/ZnS quantum dots with hydrophilic alloy shell supported by flower-like ZnIn2S4: A S-scheme for efficient photocatalytic H2 evolution

被引:0
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作者
Feng, Huiying [1 ]
Zhang, Xian [1 ]
Yao, Qingzhao [1 ]
Zhou, Yuming [1 ]
He, Man [1 ]
Liu, Yong [2 ]
Zhang, Aidi [2 ]
Bu, Xiaohai [1 ,3 ]
机构
[1] School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials Engineering Research Center, Jiangsu, Nanjing,211100, China
[2] Nanjing Bready New Materials Technology Co., Ltd, Jiangsu, Nanjing,211103, China
[3] School of Materials Science and Engineering, Nanjing Institute of Technology, Nanjing,211167, China
基金
中国国家自然科学基金;
关键词
CdSe quantum dots - Flower-like znin2S4 - H 2 evolution - Hydrophilic alloy shell - Hydrophilics - Photo-catalytic - Photocatalytic hydrogen evolution - S-scheme heterostructure - Water splitting - ZnS quantum dots;
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摘要
Photocatalytic hydrogen evolution via water splitting based on semiconductor technologies is a vital way to tackle environmental problems and the energy crisis in a sustainable manner. Carrier separation efficiency, light absorption capacity and microstructure of photocatalysts are key factors affecting the efficiency of photocatalytic hydrogen evolution. However, there exist problems like low separation of photogenerated electrons and holes and limited light absorption for traditional semiconductors. Here we prepared Eu3+ doped CdSe quantum dots with hydrophilic alloy shell CdS/CdZnS/ZnS and anchored it on flower-like ZnIn2S4 to construct S-scheme heterojunction. Characterizations of photocatalytic performance indicate that the hydrogen production performance is improved. What can be found is that the optimized composite photocatalyst has photocatalytic hydrogen evolution efficiency of 3888.79 μmol‧g−1‧h−1 and it is 6 times higher than unmodified ZnIn2S4. Furthermore, the creation of S-scheme heterojunction improves the disadvantages of ZnIn2S4 in visible light absorption and accelerates charge separation markedly. This work provides a distinctive perspective on the photocatalysts of photocatalytic hydrogen evolution. © 2023 Elsevier B.V.
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