超声作用下铜表面的零和空间

Jiahao Chen, Xiaoshi Hu, Wen Zhang, Yunlong Sun, Haiying Qin, Yongjun Yuan, Bao Lin
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引用次数: 0

摘要

在相邻的两个空化气泡重叠的壳空间中,理论上存在一个零和空间,没有空化效应引起的振动,但仍然具有压力、高温和高浓度的物质。在零和空间中,在超声波的作用下,化学反应的稳定环境是可以实现的。在1M NaOH中超声处理3 h后,在可见气泡覆盖的区域内,研究了形貌不同的铜箔上的一些环状区域(外径48.90±3.5 μm,内径40.94±3.5 μm),发现这些区域的形貌和组成与在相同环境下未超声处理的样品相似。证实了零和空间的长期存在,提出了零和空间维持的假设。这项工作可以使超声合成摆脱超声频率的限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zero-Sum Space on the Copper Surface Under Ultrasound
In the overlapped shell space between two adjacent cavitation bubbles, there theoretically exists a Zero-sum space without vibration due to the cavitation effect but still with pressure, high temperature and a high concentration of substances. Within the Zero-sum space, a stable environment for a chemical reaction is achievable under the ultrasound. In this work, some ring-shaped regions (outer diameter 48.90±3.5 μm, inner diameter 40.94±3.5 μm) on copper foil with distinctive morphology were investigated in the area covered by visible bubbles under ultrasound treatment in 1M NaOH for 3 h. The morphology and composition of these regions were found to be similar to that of sample fabricated in the same environment without ultrasound. It has confirmed the long-term existence of Zero-sum space and raised a hypothesis of Zero-sum space maintenance. This work may lead to release the ultrasonic synthesis from the limitation of ultrasonic frequency.
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