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Morphology engineering of type-II heterojunction nanoarrays for improved sonophotocatalytic capability

Authors :
Peng Li
Yaodong Chen
Yuqing Li
Yongming Fu
Wenliang Liu
Jizhou Wu
Zeqian Ren
Xiu Li
Lixia Guo
Qiwei Zhang
Jie Ma
Source :
Ultrasonics Sonochemistry, Ultrasonics Sonochemistry, Vol 81, Iss, Pp 105849-(2021)
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

Highlights • ZnO/ZnS nanostructures with type-II heterojunction are successfully synthesized. • Heterojunction nanotube exhibits better sonophotocatalysis than nanorod. • Effect of morphology on piezoelectric is experimentally and simulatively studied. • Morphology engineering can affect sonophotocatalysis through turning piezoelectric.<br />Sonophotocatalysis is one of the most significant outcomes of the exploration of the interaction between piezoelectric field and charge carriers, which exhibits potential applications in dye degradation, water splitting, and sterilization. Although several heterojunction catalysts have been applied to improve the sonophotocatalytic capability, the importance of the morphology on the sonophotocatalytic capability has not been emphasized. In this study, brush-like ZnO nanorod arrays are synthesized on a stainless-steel mesh and subsequently vulcanized into ZnO/ZnS core–shell nanorod arrays to investigate the sonophotocatalytic capability of the heterojunction. The sonophotocatalytic capability increases from 25.1% to 45.4% through vulcanization. Afterward, the ZnO/ZnS nanorods are etched to ZnO/ZnS nanotubes without affecting the crystallography and distribution of the ZnS nanoparticle shell, further improving the capability to 63.3%. The improvement can be ascribed to the coupling effect of the enhanced piezoelectric field and the reduced migration distance, which suppresses the recombination of photoexcited electron–hole pairs while transforming the morphology from nanorod to nanotube, as proven by the electron spin resonance test and numerical simulations. This study explores a novel approach of morphology engineering for enhancing the sonophotocatalytic capability of heterojunction nanoarrays.

Details

ISSN :
13504177
Volume :
81
Database :
OpenAIRE
Journal :
Ultrasonics Sonochemistry
Accession number :
edsair.doi.dedup.....9956ac7602cf86531564fcfb9ae92dd0
Full Text :
https://doi.org/10.1016/j.ultsonch.2021.105849