Jing Xinbo, Peng Xueying, Cao Youzhi, Wang Wei, Wang Shufen
School of Chemistry and Chemical Engineering, Key Laboratory for Green Processing of Chemical Engineering of Xinjiang Bingtuan, Shihezi University Shihezi 832000 China.
College of Sciences, Shihezi University Shihezi 832000 China.
RSC Adv. 2018 Oct 3;8(59):33993-33999. doi: 10.1039/c8ra05473h. eCollection 2018 Sep 28.
The production of H from water using photocatalysts is a promising way of generating clean, renewable and alternative energy. The key issue is to develop active and stable photocatalysts. Here, we report a novel CdS/Pt/MoC heterostructure photocatalyst, where Pt nanoparticles are closely supported on CdS/MoC. The UV-vis spectrum and EIS Nyquist plots show that MoC can boost the absorption in the UV-vis region and improve the separation of the photogenerated electron-hole pairs from CdS. The Pt nanoparticles act as the active co-catalyst that promotes the transient photocurrent response. As a result, the CdS/Pt/MoC photocatalyst exhibits an excellent H evolution activity up to 1828.82 μmol h g under visible-light irradiation, 8.5 and 16.2 times higher than that of pristine CdS and CdS/MoC, respectively. Moreover, a high apparent quantum yield (AQY) of 9.39% is obtained at 400 nm for the CdS/Pt/MoC heterostructure photocatalyst.
利用光催化剂从水中制氢是一种有前景的产生清洁、可再生和替代能源的方式。关键问题是开发活性和稳定的光催化剂。在此,我们报道了一种新型的CdS/Pt/MoC异质结构光催化剂,其中Pt纳米颗粒紧密负载在CdS/MoC上。紫外可见光谱和电化学阻抗谱的奈奎斯特图表明,MoC可以增强紫外可见区域的吸收,并改善CdS光生电子-空穴对的分离。Pt纳米颗粒作为促进瞬态光电流响应的活性助催化剂。结果,CdS/Pt/MoC光催化剂在可见光照射下表现出优异的析氢活性,高达1828.82 μmol h g,分别比原始CdS和CdS/MoC高8.5倍和16.2倍。此外,CdS/Pt/MoC异质结构光催化剂在400 nm处获得了9.39%的高表观量子产率(AQY)。