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Characterization of stable and transient cavitation in megasonically irradiated aqueous solutions

机译:超声辐照水溶液中稳定和短暂的空化现象

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摘要

Megasonic cleaning is routinely used for removal of particulate contaminants from various surfaces in integrated circuit industry. One of the drawbacks of megasonic cleaning is that although it can achieve good particle removal efficiencies at high power densities, it also causes feature damage. The current paradigm is that damage is primarily caused by transient cavitation whereas cleaning is affected by streaming and stable cavitation. In order to develop a damage-free and effective megasonic cleaning process, it is essential to understand the acoustic bubble behavior and identify conditions that generate significant stable cavitation without any transient cavitation. In the current work, microelectrode based chronoamperometry, pressure measurements using a hydrophone and fluorescence spectroscopy studies were conducted under different acoustic frequencies (1-3 MHz) and power densities (2-8 W/cm~2) to fundamentally investigate the type of cavitation produced under these conditions and also establish a correlation to the generation of hydroxyl radicals for characterization of transient cavitation.
机译:在集成电路工业中,兆声波清洗通常用于去除各种表面上的颗粒污染物。超声波清洗的缺点之一是,尽管它可以在高功率密度下实现良好的颗粒去除效率,但也会造成功能损坏。当前的范例是损坏主要是由短暂的气蚀引起的,而清洁则受到流动和稳定的气蚀的影响。为了开发无损且有效的兆声波清洗工艺,必须了解声波行为并确定产生明显稳定的空化而没有任何瞬时空化的条件。在当前的工作中,基于微电极的计时电流法,使用水听器的压力测量和荧光光谱研究在不同的声频频率(1-3 MHz)和功率密度(2-8 W / cm〜2)下进行,以从根本上研究空化的类型在这些条件下产生的产物,并与羟基自由基的产生建立了相关性,以表征瞬时空化。

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