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Thermodynamics of membrane elasticity - A molecular level approach to one- and two-component fluid amphiphilic membranes, Part I: Theory

机译:膜弹性的热力学-一分子和两组分流体两亲性膜的分子水平方法,第一部分:理论

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摘要

The present publication provides a detailed theoretical approach to the elastic properties of one- and two-component amphiphilic membranes. It is formulated in terms of the molecular free energy aiming at an application to molecular models. The work focuses on the bending elastic moduli and the difference between the condition of constant surface tension and constant chemical potentials. It is found that the bending modulus of mean curvature becomes negative for two-component membranes approaching the limit of phase separation at constant chemical potentials. The treatment of bilayer membranes explicitly integrates monolayer-monolayer coupling. This is beneficial for the assessment of coupling effects for specific molecular models. The article is completed by a comprehensive continuum mechanical description of one-component monolayers. Based on the generalized Laplace equation it is suggested that a simultaneous excess of oil and water is likely to preclude the existence of non-cylindrical bicontinuous phases.
机译:本出版物提供了一种针对一组分和两组分两亲膜的弹性特性的详细理论方法。它是根据旨在用于分子模型的分子自由能而制定的。研究工作集中在弯曲弹性模量以及恒定表面张力和恒定化学势条件之间的差异上。发现在恒定化学势下,接近于相分离极限的两组分膜的平均曲率的弯曲模量变为负。双层膜的处理明确整合了单层-单层偶联。这对于评估特定分子模型的偶联效应是有益的。本文通过对单组分单层的全面连续力学描述来完成。根据广义拉普拉斯方程,建议同时存在过量的油和水可能会排除非圆柱形双连续相的存在。

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