Jadhav Ananda J, Barigou Mostafa
School of Chemical Engineering , University of Birmingham , Edgbaston , Birmingham B15 2TT , U.K.
Langmuir. 2020 Feb 25;36(7):1699-1708. doi: 10.1021/acs.langmuir.9b03532. Epub 2020 Feb 10.
Bulk nanobubbles are a novel nanoscale bubble system with unusual properties which challenge our understanding of bubble behavior. Because of their extraordinary longevity, their existence is still not widely accepted as they are often attributed to the presence of supramolecular structures or contaminants. Nonetheless, bulk nanobubbles are attracting increasing attention in the literature, but reports generally lack objective evidence that the observed nano-entities are indeed nanobubbles. In this paper, we use various physical and chemical analytical techniques to provide multiple evidence that the nano-entities produced mechanically in pure water by a continuous high-shear rotor-stator device or acoustic cavitation and spontaneously by water-ethanol mixing are indeed gas-filled domains. We estimate that the results presented here combined provide conclusive proof that bulk nanobubbles do exist and they are stable. This paper should help close the debate about the existence of bulk nanobubbles and, hence, enable the scientific community to rather focus on developing the missing fundamental science in this area.
体相纳米气泡是一种具有特殊性质的新型纳米级气泡体系,这些性质挑战了我们对气泡行为的理解。由于它们超长的寿命,其存在尚未被广泛接受,因为它们常常被归因于超分子结构或污染物的存在。尽管如此,体相纳米气泡在文献中正吸引着越来越多的关注,但报告通常缺乏客观证据证明所观察到的纳米实体确实是纳米气泡。在本文中,我们使用各种物理和化学分析技术来提供多项证据,证明通过连续高剪切转子 - 定子装置或声空化在纯水中机械产生以及通过水 - 乙醇混合自发产生的纳米实体确实是气体填充区域。我们估计,这里呈现的结果共同提供了确凿的证据,证明体相纳米气泡确实存在且它们是稳定的。本文应有助于结束关于体相纳米气泡存在与否的争论,从而使科学界能够转而专注于发展该领域缺失的基础科学。