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Synthesis and Enhanced Light Photocatalytic Activity of Modulating Band BiOBrXI1-X Nanosheets.


ABSTRACT: The photocatalysis technique has been proven to be a promising method to solve environmental pollution in situations of energy shortage, and has been intensively investigated in the field of pollutant degradation. In this work, a band structure-controlled solid solution of BiOBrXI1-X (x = 0.00, 0.05, 0.10, 0.15, 0.20, 1.00) with highly efficient light-driven photocatalytic activities was successfully synthesized via simple solvothermal methods. The phase composition, crystal structure, morphology, internal molecular vibration, optical properties, and energy band structure were characterized and analyzed by XRD, SEM, HRTEM, XPS, Raman, and UV Vis DRS. To evaluate the photocatalytic activity of BiOBrXI1-X, rhodamine B was selected as an organic pollutant. In particular, BiOBr0.15I0.85 displayed significantly enhanced photocatalytic activity by virtue of modulating the energy band position, optimizing redox potentials, and accelerating carrier separation. Moreover, the enhancement mechanism was elucidated on the basis of band structure engineering, which provides ideas for the design of highly active photocatalysts for practical application in the fields of environmental issues and energy conservation.

SUBMITTER: Zhang B 

PROVIDER: S-EPMC8619692 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Synthesis and Enhanced Light Photocatalytic Activity of Modulating Band BiOBr<sub>X</sub>I<sub>1-X</sub> Nanosheets.

Zhang Bingke B   Fu Shengwen S   Wang Dongbo D   Jiao Shujie S   Zeng Zhi Z   Zhang Xiangyu X   Xu Zhikun Z   Liu Yaxin Y   Zhao Chenchen C   Pan Jingwen J   Liu Donghao D   Wang Jinzhong J  

Nanomaterials (Basel, Switzerland) 20211102 11


The photocatalysis technique has been proven to be a promising method to solve environmental pollution in situations of energy shortage, and has been intensively investigated in the field of pollutant degradation. In this work, a band structure-controlled solid solution of BiOBr<sub>X</sub>I<sub>1-X</sub> (x = 0.00, 0.05, 0.10, 0.15, 0.20, 1.00) with highly efficient light-driven photocatalytic activities was successfully synthesized via simple solvothermal methods. The phase composition, crysta  ...[more]

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