热电性
纳米材料
材料科学
钙钛矿(结构)
饮用水净化
纳米技术
污染物
降级(电信)
分解水
环境科学
地表水
工艺工程
极化(电化学)
水处理
科技与社会
作者
Huaijun Yi,Taosheng Xu,Ruhai Du,Zheng Wu,Changchun Hao,Gangqiang Zhu,Yanmin Jia
摘要
The currently strict environmental protection policies have spurred the development of innovative technologies for water purification. Under cooling or heating excitation, such as natural temperature variations, pyroelectric perovskite materials can generate plenty of positive and negative electric charges to pyrocatalytically drive water purification, which is a novel green technology and has emerged as a promising water treatment solution. Currently, the time-consuming cooling-heating alternation excitation is inevitable in order to achieve high pyrocatalytic degradation performance of organic pollutants in water solutions. Determining how to further enhance pyrocatalytic performance is key for future practical applications. On the basis of the deep analysis of the pyro-electro-chemical coupling mechanisms, this review proposes some effective strategies to enhance the pyrocatalysis of perovskite for water purification, including increasing polarization strength, modulating microstructure, optimizing surface and interface regulation and building multicatalytic synergy between pyrocatalysis and piezo-/photocatalysis. This review outlines a roadmap for future research on efficient pyrocatalytic water purification application through ultilizing environmental temperature fluctuations, such as the natural day and night alternation.
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