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Electrostatic Maxwell stress model of the shapes of condensed phase domains in monolayers at the air-water interface

机译:气-水界面单层凝结相域形状的静电麦克斯韦应力模型

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The formation mechanism of the shapes of condensed phase domains in monolayers at the air-water interface was investigated taking into account the surface pressure, line tension, and electrostatic energy due to the spontaneous polarization generated in normal and in-plane direction. By deriving the shape equation of monolayer domains as the mechanical balance at the domain boundary, we found that the electrostatic energy contributes to the shape equation as electrostatic Maxwell stress. Development of a cusp from condensed phase domains of fatty acid monolayers, which has been experimentally observed, was analyzed by the shape equation. It was found that the development of a cusp originated from the strong Maxwell stress, which was induced by the non-uniform orientational distribution in the fatty acid domain, and that cusped shapes gave a minimum of the free energy of the domain. It demonstrates that the shape equation with Maxwell stress, which is derived in the present study, is useful to study the formation mechanism of the shapes of condensed phase domains in monolayers. (C) 2008 American Institute of Physics.
机译:考虑到表面压力,线张力和由于在法向和平面方向上自发极化产生的静电能,研究了气-水界面处单层凝结相畴形状的形成机理。通过导出单层畴的形状方程作为畴边界处的机械平衡,我们发现静电能作为静电麦克斯韦应力对形状方程做出贡献。通过形状方程分析了通过实验观察到的从脂肪酸单层的冷凝相域发展的尖峰。发现尖点的发展源于强烈的麦克斯韦应力,麦克斯韦应力是由脂肪酸域中不均匀的取向分布引起的,尖角的形状给出了最小的域自由能。结果表明,本研究导出的麦克斯韦应力形状方程对研究单层凝聚相域形状的形成机理很有帮助。 (C)2008美国物理研究所。

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