Recent Advances in Piezocatalysts for Dye Degradation

Author:

Zhou Lu1,Meng Linghui1,Jia Haowei1,Lu Yile1,Liang Tianyue1,Yuan Yu1,Liu Chao1,Dong Zekun1,Hu Long1,Guan Peiyuan1ORCID,Zhou Yingze1,Li Mengyao1,Wan Tao1,Han Zhaojun2,Chu Dewei1ORCID

Affiliation:

1. School of Materials Science and Engineering The University of New South Wales High St. Sydney NSW 2052 Australia

2. School of Chemical Engineering The University of New South Wales High St. Sydney NSW 2052 Australia

Abstract

AbstractPiezocatalysis is attracting extensive attention in recent years because it can directly convert mechanical energy from the ambient environment (such as tiny vibrations and noise) into piezopotential for catalytic activities. Dyes are widely used in diverse industries, including paper, printing, and textiles, which cause serious environmental problems due to their persistence and toxicity. Unlike traditional catalysts that rely on chemical reactions to drive dye degradation, piezocatalysts offer a sustainable and cost‐effective alternative to breaking down complex molecules through creating highly reactive species, which have shown a significant promise in the treatment of organic pollutants in wastewater. In this review, the basic principles of piezocatalysis are first outlined, specifically describing two ubiquitous forms of driving force in nature. Following the catalytic mechanism, the current mainstream piezocatalytic materials are classified into two categories: organic and inorganic materials with detailed discussions. Moreover, after investigating and analyzing previous literature, effective strategies for improving piezocatalytic efficiency for dye degradation are systematically compared and summarized. In the end, current issues that need to be addressed in the future as well as potential research directions related to piezocatalysis are prospected. This work provides an insight into solving current issues to advance the piezocatalysts.

Funder

University of New South Wales

Publisher

Wiley

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