Harnessing ultrasound in photocatalysis: Synthesis and piezo-enhanced effect: A review

光催化 压电 材料科学 纳米技术 超声波 空化 降级(电信) 超声波传感器 污染物 声化学 化学工程 催化作用 化学 复合材料 声学 计算机科学 有机化学 工程类 物理 电信
作者
Chunyan Li,Xiaozhuo Wang,Jianhao Wu,Jingyang Gao,Rixu Zhao,Sa-Sa Xia,Hua Yang,Zhi Chen,Lan Li,Wen Wang
出处
期刊:Ultrasonics Sonochemistry [Elsevier]
卷期号:99: 106584-106584 被引量:39
标识
DOI:10.1016/j.ultsonch.2023.106584
摘要

The photocatalytic technique has drawn far-ranging interests in addressing the current issues; however, its property suffers from the limited visible light response and rapid recombination of carriers. To address these issues, two specific approaches have been proposed to enhance the photocatalytic activity: (1) ultrasound-assisted synthesis has been utilized to prepare photocatalysts, resulting in refined grain size, increased specific surface area, and reduced photogenerated carrier recombination; (2) sonophotocatalysis and piezoelectric enhanced photocatalysis have been developed to accelerate the reaction, which utilizes the synergism between ultrasound and light. On one side, sonophotocatalysis generates cavitation bubbles which induce more reactive radicals for redox reactions. On the other side, ultrasound induces deformation of the piezoelectric material structure, which changes the internal piezoelectric potential and improves the photocatalytic performance. Currently, intensive efforts have been devoted to related research and great progress has been reached with applications in pollutant degradation, new energy production, and other fields. This work starts by elucidating the fundamental concept of ultrasound-assisted photocatalyst synthesis and photocatalysis. Then, the synergistic behavior between ultrasonic and light in ultrasonic-assisted photocatalysis has been thoroughly discussed, including pollutant degradation, water splitting, and bacterial sterilization. Finally, the challenge and outlook are investigated and proposed.

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