纳米棒
纳米片
材料科学
光电流
光催化
热液循环
异质结
X射线光电子能谱
复合数
光电效应
化学工程
复合材料
纳米技术
催化作用
光电子学
化学
有机化学
工程类
作者
Qi Yang,Wenzhen Qin,Yu Xie,Kai Zong,Yue Guo,Zhaoqi Song,Geng Luo,Waseem Raza,Arshad Hussain,Yun Ling,Junming Luo,Wei Zhang,Hao Ye,Jie Zhao
标识
DOI:10.1016/j.seppur.2022.121603
摘要
Herein, a generalizable strategy using the solvothermal process to obtain the heterostructural composites between BiOBr nanosheet and CdS nanorods is presented. Using a facile hydrothermal method, the CdS nanorods were anchored onto BiOBr nanosheets with average scales ranging from 10 to 500 nm to build up the heterostructure. The improvement of the efficiency of charge separation through the construction of 2D/1D heterojunction was confirmed by SEM, TEM, XPS, photocurrent, and AC impedance. CO2 photoreduction was employed to study the photocatalytic activities of the as prepared composites. The heterostructural BiOBr/CdS composites owned better activity than both the pure BiOBr nanosheets and pure CdS nanorods. Most significantly, the yield of CO during photocatalytic reduction reaction with BiOBr/CdS-5% catalyst was measured to be 13.6 μmol g−1, which was 1.8 times larger than that with BiOBr nanosheets and 6.4 times larger than that with CdS nanorods during 3 h simulative sunlight exposure. The optimized photocatalytic property of heterostructural BiOBr/CdS-5% composite could be attributed to the wide sunlight response range, large specific surface area, and effective separation of photoelectrons-holes from the heterostructure between BiOBr nanosheets and CdS nanorods.
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