A correlation between cavitation bubble temperature, sonoluminescence and interfacial chemistry - A minireview.

A correlation between cavitation bubble temperature, sonoluminescence and interfacial chemistry - A minireview.
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空化泡温度、声致发光和界面化学之间的相关性-一个小评论。

DOI:
10.1016/j.ultsonch.2022.105988
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发表时间:
2022-04
影响因子:
8.4
通讯作者:
Ashokkumar M
Ashokkumar M
中科院分区:
化学1区
文献类型:
--
作者:
Yusof NSM;Anandan S;Sivashanmugam P;Flores EMM;Ashokkumar M

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概述了声致发光与气泡温度的关系。讨论了气泡温度的理论估算和实验估算。讨论了界面化学在声空化过程中的重要性。这一小型概述的目的是让这一领域的新手受益。超声诱导空化(声空化)过程具有广泛的应用前景。几十年来,来自不同学科的科学家一直在探索声空化过程的基本方面。有充分的文献记载,当空化泡破裂时,会产生极端的局部温度和压力条件。还开发了几种实验技术来估计空化泡温度。根据特定的实验条件,可以观察到空化气泡的光发射,称为声致发光。声致发光研究已经被用来发展对单气泡和多气泡系统中的空化过程的基本理解。本文从空化泡温度、声致发光和界面化学等方面对过去2-30年来声空化过程的基本认识进行了综述。
A brief overview on the correlation between sonoluminescence and bubble temperature. Both theoretical and experimental estimation of bubble temperatures discussed. The importance of interfacial chemistry in acoustic cavitation process discussed. The mini-overview is aimed at benefiting new comers to this field. Ultrasound induced cavitation (acoustic cavitation) process is found useful in various applications. Scientists from various disciplines have been exploring the fundamental aspects of acoustic cavitation processes over several decades. It is well documented that extreme localised temperature and pressure conditions are generated when a cavitation bubble collapses. Several experimental techniques have also been developed to estimate cavitation bubble temperatures. Depending upon specific experimental conditions, light emission from cavitation bubbles is observed, referred to as sonoluminescence. Sonoluminescence studies have been used to develop a fundamental understanding of cavitation processes in single and multibubble systems. This minireview aims to provide some highlights on the development of basic understandings of acoustic cavitation processes using cavitation bubble temperature, sonoluminescence and interfacial chemistry over the past 2–3 decades.
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