Li Hanbo, Sun Tongqing, Zhang Lixin, Cao Yaan
Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, TEDA Applied Physics Institute and School of Physics, Nankai University, Tianjin 300457, China.
Nanoscale. 2020 Sep 21;12(35):18180-18192. doi: 10.1039/c9nr10394e. Epub 2020 Aug 28.
A series of Pd-modified sulphide photocatalysts (ZnS-PdX%, InS-PdX% and CuS-PdX%) for the photoreduction of CO were synthesised via a simple hydrothermal method. Here, the introduction of the -S-Pd-S- surface species onto the surface of the sulphides extended the visible light absorption, prolonged the lifetime of photogenerated electrons and suppressed the recombination of the photocarriers. Additionally, the match between the band structure and the redox potential for the photoreduction of CO was improved. As a result, the photocatalytic activity of ZnS-Pd1.5%, InS-Pd1.5% and CuS-Pd1.5% was enhanced when compared with the results from ZnS, InS and CuS photocatalysts. Also, ZnS-Pd1.5%, InS-Pd1.5% and CuS-Pd1.5% showed different photocatalytic activities due to differences in the matching relationships between the band structure and the redox potential. In this paper, extensive details on adjusting and matching the energy band structures, as well as viable methods for improving photocatalytic performance, are provided.
通过一种简单的水热法合成了一系列用于光催化还原CO的钯改性硫化物光催化剂(ZnS-PdX%、InS-PdX%和CuS-PdX%)。在此,-S-Pd-S-表面物种引入到硫化物表面,扩展了可见光吸收,延长了光生电子寿命,并抑制了光载流子的复合。此外,改善了能带结构与CO光催化还原氧化还原电位之间的匹配。结果,与ZnS、InS和CuS光催化剂的结果相比,ZnS-Pd1.5%、InS-Pd1.5%和CuS-Pd1.5%的光催化活性得到增强。而且,由于能带结构与氧化还原电位之间匹配关系的差异,ZnS-Pd1.5%、InS-Pd1.5%和CuS-Pd1.5%表现出不同的光催化活性。本文提供了关于调整和匹配能带结构的详细信息以及提高光催化性能的可行方法。