Based on Z‐scheme heterojunction CsPbBr3/UiO‐66 composite photocatalytic degradation

Author:

Zhang Chunyan1ORCID,Miao Jin1ORCID,Guo Lin2ORCID,Tan Tao1ORCID,Cai Wei13ORCID,Lei Xiang13ORCID,Li Yanrui4ORCID,Wang Zhenhua135ORCID

Affiliation:

1. School of Metallurgy and Materials Engineering Chongqing University of Science and Technology Chongqing China

2. School of Chemistry and Chemical Engineering Chongqing University of Science and Technology Chongqing China

3. Chongqing Key Laboratory of Nano/Micro Composite Materials and Devices Chongqing University of Science and Technology Chongqing China

4. College of Materials Science and Engineering Xi'an University of Science and Technology Xi'an China

5. Research Institute of Waste Incineration Power Generation Technology Chongqing University of Science and Technology Chongqing China

Abstract

As an environmentally friendly technology, photocatalysis technology has great application prospects in the fields of photoelectric energy and environmental pollutants treatment, and its core is photocatalyst. In recent years, perovskite materials with a narrow band gap, high quantum efficiency, and high carrier mobility have been widely concerned to use as photocatalysts. However, as to a single perovskite, the electron–hole separation rate is still low. In this paper, CsPbBr3/UiO‐66 composite photocatalyst was prepared based on a heterojunction strategy. CsPbBr3/UiO‐66 photocatalyst has excellent photocatalytic performance: The degradation rate of methyl orange (MO) in aqueous solution is more than 90% in 90 min, which is much higher than that of original CsPbBr3 (57.7% in 90 min). Based on various characterization techniques, our study verified the formation of a Z‐scheme heterojunction between CsPbBr3 and UiO‐66. At the same time, the improved photocatalytic performance of CsPbBr3/UiO‐66 is due to the efficient Z‐scheme charge migration mechanism in CsPbBr3/UiO‐66. This work is expected to provide a new opportunity to regulate the photocatalytic performance of perovskite by heterojunction strategy.

Funder

Chongqing Research Program of Basic Research and Frontier Technology

Natural Science Foundation of Chongqing

National Natural Science Foundation of China

Natural Science Basic Research Program of Shaanxi Province

Publisher

Wiley

Subject

Inorganic Chemistry,General Chemistry

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