Enhanced Visible-Light Photocatalytic Activity of Zro2/Gcn Composite by Introducing Nitrogen Vacancies with H2 Plasma Treatment

18 Pages Posted: 8 Sep 2023

See all articles by Meng Jiang

Meng Jiang

Hainan Normal University

Mingxiu Huang

Hainan Normal University

Jie Cong

Hainan Normal University

Yucen Yao

Hainan Normal University

Wei Sun

Hainan Normal University - Key Laboratory of Laser Technology and Optoelectronic Functional Materials of Hainan Province

Bei Wang

Hainan Normal University

Abstract

The abuse of tetracycline antibiotics (TCs) has caused serious environmental pollution problems in recent years due to excessive use of biomedicine, healthcare, animal husbandry and other fields. How to effectively remove TCs contaminants from water has been one of research emphasis on environment protection. In this work, we have successfully prepared a composite photocatalyst (P16-ZrO2/gCN) by physical mixing method and H2 plasma treatment at room temperature. The ZrO2 doping and H2 plasma treatment have synergetic effects on photocatalytic performance of gCN for degradation of TCs, and the highest degradation rate is achieved with 16 mins plasma treatment. According to BET, XPS and EPR results, more mesopores and nitrogen vacancies (NVs) are introduced by H2 plasma treatment. Furthermore, In-situ TRPL spectra illustrate that ZrO2 doping and H2 plasma treatment facilitate charge transfer process of catalysts. Overall, this work firstly reports utilizing ZrO2 nanoparticles/H2 plasma treatment together to boost photocatalytic performance of gCN and provides a low-cost approach for preparation of other photocatalysts.

Keywords: graphic carbon nitride, plasma treatment, nitrogen vacancies, tetracycline

Suggested Citation

Jiang, Meng and Huang, Mingxiu and Cong, Jie and Yao, Yucen and Sun, Wei and Wang, Bei, Enhanced Visible-Light Photocatalytic Activity of Zro2/Gcn Composite by Introducing Nitrogen Vacancies with H2 Plasma Treatment. Available at SSRN: https://ssrn.com/abstract=4566058 or http://dx.doi.org/10.2139/ssrn.4566058

Meng Jiang

Hainan Normal University ( email )

Haikou
China

Mingxiu Huang

Hainan Normal University ( email )

Haikou
China

Jie Cong

Hainan Normal University ( email )

Haikou
China

Yucen Yao

Hainan Normal University ( email )

Haikou
China

Wei Sun

Hainan Normal University - Key Laboratory of Laser Technology and Optoelectronic Functional Materials of Hainan Province ( email )

Haikou
China

Bei Wang (Contact Author)

Hainan Normal University ( email )

Haikou
China

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