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大量纳米气泡能否通过静电相互作用来稳定?

Can bulk nanobubbles be stabilized by electrostatic interaction?

作者信息

Wang Shuo, Zhou Limin, Gao Yongxiang

机构信息

Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, China.

出版信息

Phys Chem Chem Phys. 2021 Aug 12;23(31):16501-16505. doi: 10.1039/d1cp01279g.

Abstract

It has been suggested that electrostatic stress arising from charges accumulated at the surface of nanobubbles might balance Laplace pressure leading to their stability. This mechanism has been widely discussed in the nanobubble field for the past decade. However, the stress in the diffusive double layer was overlooked when calculating the electrostatic effect in previous theories. In this communication, we recalculated this effect using the classical double layer theory. Combined with experimentally measured zeta potential, we find that the ratio of electrostatic pressure to Laplace pressure is much less than 10-2, which suggests that electrostatic interaction may not be the main factor for stabilizing bulk nanobubbles.

摘要

有人提出,纳米气泡表面积累的电荷产生的静电应力可能平衡拉普拉斯压力,从而导致其稳定性。在过去十年中,这种机制在纳米气泡领域得到了广泛讨论。然而,在以往理论计算静电效应时,扩散双电层中的应力被忽略了。在本通讯中,我们使用经典双电层理论重新计算了这种效应。结合实验测量的zeta电位,我们发现静电压力与拉普拉斯压力之比远小于10-2,这表明静电相互作用可能不是稳定大量纳米气泡的主要因素。

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