Yiling Li, Xiaoyao Yu, Yingjie Zhou, Yao Lin, and Ying Wu, Nanostructured ZnO/BiVO4 Ⅰ-scheme heterojunctions for piezocatalytic degradation of organic dyes via harvesting ultrasonic vibration energy, Int. J. Miner. Metall. Mater.,(2024). https://doi.org/10.1007/s12613-024-2920-x
Cite this article as:
Yiling Li, Xiaoyao Yu, Yingjie Zhou, Yao Lin, and Ying Wu, Nanostructured ZnO/BiVO4 Ⅰ-scheme heterojunctions for piezocatalytic degradation of organic dyes via harvesting ultrasonic vibration energy, Int. J. Miner. Metall. Mater.,(2024). https://doi.org/10.1007/s12613-024-2920-x
Research Article

Nanostructured ZnO/BiVO4 Ⅰ-scheme heterojunctions for piezocatalytic degradation of organic dyes via harvesting ultrasonic vibration energy

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  • Received: 8 December 2023Revised: 27 March 2024Accepted: 18 April 2024Available online: 19 April 2024
  • BiVO4 porous spheres modified by ZnO were designed and synthesized using a facile two-step method. The resulting ZnO/BiVO4 composite catalysts have shown remarkable efficiency as piezoelectric catalysts for degrading Rhodamine B (RhB) under mechanical vibrations, they exhibit superior activity compared to pure ZnO. The 40% ZnO/BiVO4 heterojunction composite displayed the highest activity, along with good stability and recyclability. The enhanced piezoelectric catalytic activity can be attributed to the formation of an Ⅰ-scheme heterojunction structure, which can effectively inhibit the electron-hole recombination. Furthermore, hole (h+) and superoxide radical (·O2-) are proved to be the primary active species. Therefore, ZnO/BiVO4 stands as an efficient and stable piezoelectric catalyst with a broad potential application in the field of environmental water pollution treatment.

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