纳米棒
带隙
光催化
可见光谱
成核
材料科学
化学
纳米技术
化学工程
光化学
分析化学(期刊)
光电子学
催化作用
有机化学
工程类
作者
Lili Ai,Luxiang Wang,Nannan Guo,Mengjiao Xu,Dianzeng Jia,Chuan Tan,Xinxin Jia,Wenwen Cai,Yusheng Yang
摘要
The rational design of photocatalysts with more negative potentials of the conduction band is of vital importance in improving the performance of photocatalysts for reduction reactions. In this work, highly crystalline and uniform (Bi19S27I3)0.6667 nanorods were firstly synthesized by a one-step hydrothermal process. The formation of the (Bi19S27I3)0.6667 nanorods consists of nucleation and crystal growth in agglomerates of spherical particles. The obtained (Bi19S27I3)0.6667 nanorods with a narrow band gap of about 1.80 eV, a wide visible light absorption spectrum, and a more negative conduction band potential are capable of producing high-reducibility electrons, and an efficiently photogenerated carriers separation capability. The results demonstrate that the (Bi19S27I3)0.6667 nanorods can be as efficient and stable photocatalysts for Cr(VI) photoreduction and RhB degradation reactions. The photocatalytic reduction efficiency of Cr(VI) over the (Bi19S27I3)0.6667 nanorods was determined to be more than 3 times those of the corresponding BiOI and Bi2S3 photocatalysts under visible light. The detailed formation mechanism of (Bi19S27I3)0.6667 nanorods and the reaction mechanism of Cr(VI) photoreduction were proposed based on various characterizations.
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