Yang C Y, Zhao Ya-Pu
State Key Laboratory of Nonlinear Mechanics (LNM), Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China.
J Chem Phys. 2004 Mar 15;120(11):5366-76. doi: 10.1063/1.1648014.
Since hydration forces become very strong at short range and are particularly important for determining the magnitude of the adhesion between two surfaces or interaction energy, the influences of the hydration force and elastic strain energy due to hydration-induced layering of liquid molecules close to a solid film surface on the stability of a solid film in a solid-on-liquid (SOL) nanostructure are studied in this paper. The liquid of this thin SOL structure is a kind of water solution. Since the surface forces play an important role in the structure, the total free energy change of SOL structures consists of the changes in the bulk elastic energy within the solid film, the surface energy at the solid-liquid interface and the solid-air interface, and highly nonlinear volumetric component associated with interfacial forces. The critical wavelength of one-dimensional undulation, the critical thickness of the solid film, and the critical thickness of the liquid layer are studied, and the stability regions of the solid film have been determined. Emphasis is placed on calculation of critical values, which are the basis of analyzing the stability of the very thin solid film.
由于水化力在短程范围内变得非常强,并且对于确定两个表面之间的粘附力大小或相互作用能尤为重要,本文研究了由于靠近固体薄膜表面的液体分子水化诱导分层而产生的水化力和弹性应变能对固 - 液(SOL)纳米结构中固体薄膜稳定性的影响。这种薄SOL结构的液体是一种水溶液。由于表面力在该结构中起着重要作用,SOL结构的总自由能变化包括固体薄膜内的体弹性能变化、固 - 液界面和固 - 气界面的表面能,以及与界面力相关的高度非线性体积分量。研究了一维起伏的临界波长、固体薄膜的临界厚度和液层的临界厚度,并确定了固体薄膜的稳定区域。重点在于临界值的计算,这些临界值是分析非常薄的固体薄膜稳定性的基础。