光催化
材料科学
分解水
介电谱
吉布斯自由能
制氢
半导体
光催化分解水
光致发光
纳米技术
氢
光电化学电池
化学物理
电化学
化学工程
电极
催化作用
物理化学
光电子学
化学
热力学
电解质
生物化学
物理
有机化学
工程类
作者
Yingpeng Xie,Junhua Chang,Peng Zheng,Lili Zhang,Tengfeng Xie,Renzheng Jiang,Zhanguo Zhang,Yongqiang Yang,Mengke Zou,Lichang Yin,Chao Zhen,Fei Han,Kaikai Ba,Guangwen Xu
标识
DOI:10.1021/acsami.3c10097
摘要
Hybrid cocatalysts have great application potential for improving the photocatalytic hydrogen evolution performance of semiconductors. The interfaces between components of hybrid cocatalysts make a great contribution to the improvement, but the associated mechanisms remain unclear. Herein, we prepared and tested three comparative CdS-based photocatalysts with NiS, NiS/Ni9S8, and Ni9S8 as the cocatalysts separately. The emphasis is placed on investigating the effect of the NiS/Ni9S8 interfaces on the photocatalytic hydrogen evolution performance of CdS. NiS/Ni9S8 exhibits a higher ability than NiS and Ni9S8 in making CdS a more active photocatalyst for water splitting. It shows that NiS, NiS/Ni9S8, and Ni9S8 perform similarly in terms of promoting the charge transfer and separation of CdS based on steady-state and time-resolved photoluminescence studies. At the same time, the linear sweep voltammetry and electrochemical impedance spectroscopy tests combined with the density functional theory calculations reveal that the component interfaces of NiS/Ni9S8 enable us to lower the water splitting activation energy, the charge-transfer resistance from the cocatalyst to sacrificial agent, and hydrogen adsorption Gibbs free energy. It is evidenced from this work that component interfaces of hybrid cocatalysts play a vital role in accelerating the dynamics of hydrogen evolution reactions.
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