Rodríguez-Valverde M A, Ruiz-Cabello F J Montes, Cabrerizo-Vilchez M A
Biocolloid and Fluid Physics Group, Department of Applied Physics, University of Granada, Campus of Fuentenueva; E-18071 Granada, Spain.
Adv Colloid Interface Sci. 2008 May 19;138(2):84-100. doi: 10.1016/j.cis.2007.12.002. Epub 2007 Dec 27.
Contact angle variability, leading to errors in interpretation, arises from various sources. Contact angle hysteresis (history-dependent wetting) and contact angle multiplicity (corrugation of three-phase contact line) are irrespectively the most frequent causes of this uncertainty. Secondary effects also derived from the distribution of chemical defects on solid surfaces, and so due to the existence of boundaries, are the known "stick/jump-slip" phenomena. Currently, the underlying mechanisms in contact angle hysteresis and their connection to "stick/jump-slip" effects and the prediction of thermodynamic contact angle are not fully understood. In this study, axial models of smooth heterogeneous surface were chosen in order to mitigate contact angle multiplicity. For each axial pattern, advancing, receding and equilibrium contact angles were predicted from the local minima location of the system free energy. A heuristic model, based on the local Young equation for spherical drops on patch-wise axial patterns, was fruitfully tested from the results of free-energy minimization. Despite the very simplistic surface model chosen in this study, it allowed clarifying concepts usually misleading in wetting phenomena.
接触角的变化会导致解释误差,其来源多种多样。接触角滞后(与历史相关的润湿性)和接触角多重性(三相接触线的波纹)分别是造成这种不确定性的最常见原因。由固体表面化学缺陷分布产生的二次效应,以及由于边界的存在而产生的已知“粘/跳-滑”现象也是如此。目前,接触角滞后的潜在机制及其与“粘/跳-滑”效应的联系以及热力学接触角的预测尚未完全理解。在本研究中,选择了光滑异质表面的轴向模型以减轻接触角多重性。对于每个轴向模式,根据系统自由能的局部最小值位置预测前进接触角、后退接触角和平衡接触角。基于局部杨氏方程的启发式模型,用于补丁状轴向模式上的球形液滴,通过自由能最小化的结果得到了有效验证。尽管本研究中选择的表面模型非常简单,但它有助于澄清通常在润湿现象中容易产生误导的概念。