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变形不对称纳米级接触中的力和薄水膜排液。

Forces and thin water film drainage in deformable asymmetric nanoscale contacts.

机构信息

Physical Chemistry I & Research Center of Micro and Nanochemistry and Engineering (Cμ), Department of Chemistry and Biology, University of Siegen , Adolf-Reichwein-Str. 2, 57076 Siegen, Germany.

出版信息

ACS Nano. 2015 Jan 27;9(1):12-5. doi: 10.1021/acsnano.5b00177.

Abstract

Gas-liquid interfaces are omnipresent in daily life, and processes involving these interfaces are the basis for a broad range of applications that span from established industrial processes to modern microengineering, technology, and medical applications for diagnosis and treatment. Despite the rapid progress in understanding intermolecular forces at such interfaces from a theoretical point of view and, in particular, from an experimental point of view down to sub-nanometer length scales, the quantitative description of all relevant forces, particularly the hydrophobic interaction and the dynamic behavior of nanometer-scale confined water films, was until now unsatisfactory. This situation is particularly the case for the elusive description and understanding of the origins of the so-called hydrophobic interaction. For soft, deformable interfaces, such as those found in asymmetric contacts between gas bubbles and a solid, a complete picture has begun to emerge that has direct consequences for interfacial water at (bio)interfaces, functionalized gas microbubbles, surface nanobubbles, and beyond.

摘要

气液界面在日常生活中无处不在,涉及这些界面的过程是广泛应用的基础,这些应用涵盖了从成熟的工业过程到现代微工程、技术以及用于诊断和治疗的医学应用。尽管从理论角度,特别是从实验角度,在理解这些界面的分子间力方面取得了快速进展,甚至达到了亚纳米长度尺度,但对所有相关力的定量描述,特别是对疏水相互作用和纳米尺度受限水膜的动态行为的定量描述,迄今为止并不令人满意。这种情况在难以描述和理解所谓的疏水相互作用的起源时尤为明显。对于柔软、可变形的界面,例如在气体气泡与固体之间的非对称接触中发现的界面,已经开始出现一幅完整的图景,这对(生物)界面处的界面水、功能化气体微泡、表面纳米气泡等都有直接影响。

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