Novel Bi2o2se/Biocl with High Visible Light Photocatalytic Activity for Environmental Remediation: Effective Layer to Layer Interfacial Charge Transfer Based on Heterojunction

28 Pages Posted: 16 Nov 2023

See all articles by Deng Ding

Deng Ding

Wuhan Polytechnic University

Xin Liu

Wuhan Polytechnic University

Jiwen Chen

Wuhan Polytechnic University

Ruina Xuan

Wuhan Polytechnic University

Liye Zhu

Wuhan Polytechnic University

Weifeng Peng

Wuhan Polytechnic University

Xiaofang Li

Wuhan Polytechnic University

Chunlei Wang

Wuhan Polytechnic University

Bo Chai

Wuhan Polytechnic University

Juntao Yan

Wuhan Polytechnic University

Zhuo Jiang

Wuhan University

Abstract

The photocatalytic activity of promising layered structure BiOX(X=Cl, Br, I) is limited by the low carrier mobility and charge transfer based on heterojunction. Hereon, we reported that Bi2O2Se with the same layered structure, high carrier mobility and broad spectrum absorption was used to composited with BiOCl to obtain effective layer to layer interfacial charge transfer and high photocatalytic activity under visible light. Bi2O2Se/BiOCl were synthesized via ion exchange method in precursor of Bi2O2Se. 25-Bi2O2Se/BiOCl shows the optimal photocatalytic removal activity of rhodamine B and Cr (VI), which was higher than that of pure BiOCl and Bi2O2Se. The analysis of morphology revealed the in-growth mechanism of Bi2O2Se/BiOCl. A strong interaction between the same layer structure Bi2O2Se and BiOCl was proved by detailed analysis of XPS and valence charge density. Transient photocurrent responses and energy-level indicated the sensitized electrons of Bi2O2Se can be injected into BiOCl effectively and produce H2O2. We believe layer structure Bi2O2Se can be candidate co-catalyst to expand photocatalytic activity of layer structure semiconductor catalysts in the visible and infrared regions, especially, for the same layered bismuth compounds.

Keywords: Photocatalysis, layered structure, Bi2O2Se, charge transfer

Suggested Citation

Ding, Deng and Liu, Xin and Chen, Jiwen and Xuan, Ruina and Zhu, Liye and Peng, Weifeng and Li, Xiaofang and Wang, Chunlei and Chai, Bo and Yan, Juntao and Jiang, Zhuo, Novel Bi2o2se/Biocl with High Visible Light Photocatalytic Activity for Environmental Remediation: Effective Layer to Layer Interfacial Charge Transfer Based on Heterojunction. Available at SSRN: https://ssrn.com/abstract=4635149 or http://dx.doi.org/10.2139/ssrn.4635149

Deng Ding (Contact Author)

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Xin Liu

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Jiwen Chen

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Ruina Xuan

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Liye Zhu

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Weifeng Peng

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Xiaofang Li

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Chunlei Wang

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Bo Chai

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Juntao Yan

Wuhan Polytechnic University ( email )

1 Machi Rd, Dongxihu Qu, Wuhan Shi
Hubei Sheng
China

Zhuo Jiang

Wuhan University ( email )

Wuhan
China

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