Construction Dual Vacancies to Regulate the Energy Band Structure of Znin2s4 for Enhanced Visible Light-Driven Photodegradation of 4-Nitrophenol

30 Pages Posted: 7 Mar 2022

See all articles by Shengjie Xia

Shengjie Xia

Zhejiang University of Technology

Guanhua Zhang

Zhejiang University of Technology

Jieyi Yang

Zhejiang University of Technology

Yue Meng

Huzhou University

Guoxiang Pan

Huzhou University

Bo Xie

Zhejiang University of Technology

Zheming Ni

Zhejiang University of Technology

Abstract

Most of the intrinsic photocatalysts with visible light response can only generate one active radical due to the limitation of their band structures, which is immediate cause limiting their photocatalytic degradation performance. In this work, ZnIn2S4 with Zn vacancy and S vacancy (VZn+S-ZnIn2S4) was prepared for the first time. As expected, the VZn+S-ZnIn2S4 exhibits remarkable photocatalytic performance for 4-Nitrophenol (4-NP) degradation under visible light and the apparent rate constant is about 11 times than that of pristine ZnIn2S4. The construction of dual vacancies can regulate the energy band structure of the ZnIn2S4, enabling it to generate •OH and •O2− simultaneously. Meanwhile, dual vacancies system can also extremely improve the separation efficiency of carriers. It is worth noting that Zn vacancy and S vacancy can capture photogenerated holes and photogenerated electrons, respectively, which is beneficial for photogenerated carriers to participate in radical generation reactions.

Keywords: ZnIn2S4, Dual vacancies, 4-Nitrophenol, Photocatalysis, Degradation

Suggested Citation

Xia, Shengjie and Zhang, Guanhua and Yang, Jieyi and Meng, Yue and Pan, Guoxiang and Xie, Bo and Ni, Zheming, Construction Dual Vacancies to Regulate the Energy Band Structure of Znin2s4 for Enhanced Visible Light-Driven Photodegradation of 4-Nitrophenol. Available at SSRN: https://ssrn.com/abstract=4051736 or http://dx.doi.org/10.2139/ssrn.4051736

Shengjie Xia (Contact Author)

Zhejiang University of Technology ( email )

Guanhua Zhang

Zhejiang University of Technology ( email )

China

Jieyi Yang

Zhejiang University of Technology ( email )

Yue Meng

Huzhou University ( email )

Huzhou, 313000
China

Guoxiang Pan

Huzhou University ( email )

Huzhou, 313000
China

Bo Xie

Zhejiang University of Technology ( email )

Zheming Ni

Zhejiang University of Technology ( email )

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