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基于COSMO-UCE的表面能和界面能新预测模型。

New Prediction Model of Surface and Interfacial Energies Based on COSMO-UCE.

作者信息

Zhao Yueqiang, Wang Shengkang, Chang Yanjiao, Liu Weiwei

机构信息

Department of Chemical Engineering, Jiangsu Ocean University (originally named Huaihai Institute of Technology), Lianyungang, 222005, Jiangsu, People's Republic of China.

出版信息

Chemphyschem. 2023 Apr 17;24(8):e202200801. doi: 10.1002/cphc.202200801. Epub 2023 Jan 16.

Abstract

The nature and strength of intermolecular and surface forces are the key factors that influence the solvation, adhesion and wetting phenomena. The universal cohesive energy prediction equation based on conductor-like screening model (COSMO-UCE) was extended from like molecules (pure liquids) to unlike molecules (dissimilar liquids). A new molecular-thermodynamic model of interfacial tension (IFT) for liquid-liquid and solid-liquid systems was developed in this work, which can predict the surface free energy of solid materials and interfacial energy directly through cohesive energy calculations based on COSMO-UCE. The applications of this model in prediction of IFT for water-organic, solid (n-hexatriacontane, polytetrafluoroethylene (PTFE) and octadecyl-amine monolayer)-liquid systems have been verified extensively with successful results; which indicates that this is a straightforward and reliable model of surface and interfacial energies through predicting intermolecular interactions based on merely molecular structure (profiles of surface segment charge density), the dimensionless wetting coefficient R can characterize the wetting behavior (poor adhesive (non-wetting), wetting, spreading) of liquids on the surface of solid materials very well.

摘要

分子间力和表面力的性质与强度是影响溶剂化、粘附和润湿现象的关键因素。基于类导体屏蔽模型(COSMO-UCE)的通用内聚能预测方程从同类分子(纯液体)扩展到了异类分子(不同液体)。在本研究中,建立了一种用于液-液和固-液体系的界面张力(IFT)分子热力学新模型,该模型可通过基于COSMO-UCE的内聚能计算直接预测固体材料的表面自由能和界面能。该模型在预测水-有机、固体(正三十六烷、聚四氟乙烯(PTFE)和十八烷基胺单分子层)-液体体系的IFT方面的应用已得到广泛验证,结果成功;这表明这是一个通过仅基于分子结构(表面段电荷密度分布)预测分子间相互作用来计算表面能和界面能的直接且可靠的模型,无量纲润湿系数R能够很好地表征液体在固体材料表面的润湿行为(粘附性差(不润湿)、润湿、铺展)。

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