Modulating Catalyst‐Reactant Interface Microenvironment for Efficient Photocatalysis on Bismuth Sulfide

Author:

Lu Hua1,Jin Xiuyue1,Tong Shuzhi1,Jin Mengru1,Zhu Zhanjun1,Fang Jiabao1,Zhong Guolun1,Chen Jue1,Deng Meng1,Chen Fei1

Affiliation:

1. NingboTech University Laboratory of Polymer Materials and Engineering No.1 Qianhu South Road 315100 Ningbo China

Abstract

AbstractPollution by organic dyes has received extensive attention due to their high toxicity, biohazard, and high stability in the natural environment, and the development of high‐efficiency dye degradation and heavy metal ion reduction technologies is urgently needed in photocatalysis. However, the interface microenvironment between catalyst and pollutant is often ignored, and the poor compatibility of the catalyst‐pollutant interface constrains further efficient catalysis. Herein, to improve the compatibility of the catalyst‐pollutant interface, a surfactant‐capping strategy for enhanced photocatalysis of rhodamine B (RhB) on one‐dimensional rod‐like Bi2S3 nanocrystals was investigated. Specifically, polyvinylpyrrolidone (PVP)‐capped Bi2S3 (Bi2S3‐PVP) showed enhanced RhB degradation rate compared with pure Bi2S3, and further studies suggested enhanced reaction interface compatibility at the Bi2S3‐PVP‐RhB interface. This work provides an interface microenvironment modulation strategy for improving photocatalytic performance towards organic dyes.

Funder

Natural Science Foundation of Ningbo

National Natural Science Foundation of China

Natural Science Foundation of Ningbo Municipality

Publisher

Wiley

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

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