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Spreading dynamics of 2D dipolar Langmuir monolayer phases

机译:二维偶极Langmuir单层相的扩散动力学

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摘要

We study the spreading of a liquid 2D dipolar droplet in a Langmuir monolayer. Interfacial tensions (line tensions) and microscopic contact angles depend on the scale on which they are probed and obey a scaling law. Assuming rapid equilibration of the microscopic contact angle and ideal slippage of the 2D solid/liquid and solid/gas boundary, the driving force of spreading is merely expressed by the shape-dependent long-range interaction integrals. We obtain good agreement between experiment and numerical simulations using this theory.
机译:我们研究了Langmuir单层中液态2D偶极液滴的扩散。界面张力(线张力)和微观接触角取决于所探测的尺度并遵守比例定律。假设微观接触角的快速平衡以及二维固/液和固/气边界的理想滑移,则扩散的驱动力仅由形状相关的远程相互作用积分来表示。使用该理论,我们在实验和数值模拟之间获得了很好的一致性。

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