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首页> 外文期刊>The Journal of Chemical Physics >Polymer nanodroplets forming liquid bridges in chemically structured slit pores: A computer simulation
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Polymer nanodroplets forming liquid bridges in chemically structured slit pores: A computer simulation

机译:聚合物纳米液滴在化学结构狭缝孔中形成液桥:计算机模拟

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Using a coarse-grained bead-spring model of flexible polymer chains, the structure of a polymeric nanodroplet adsorbed on a chemically decorated flat wall is investigated by means of molecular dynamics simulation. We consider sessile drops on a lyophilic (attractive for the monomers) region of circular shape with radius R-D while the remaining part of the substrate is lyophobic. The variation of the droplet shape, including its contact angle, with R-D is studied, and the density profiles across these droplets also are obtained. In addition, the interaction of droplets adsorbed on two walls forming a slit pore with two lyophilic circular regions just opposite of one another is investigated, paying attention to the formation of a liquid bridge between both walls. A central result of our study is the measurement of the force between the two substrate walls at varying wall separation as well as the kinetics of droplet merging. Our results are compared to various phenomenological theories developed for liquid droplets of mesoscopic rather than nanoscopic size. (C) 2004 American Institute of Physics.
机译:使用柔性聚合物链的粗粒珠弹簧模型,通过分子动力学模拟研究了吸附在化学装饰的平坦壁上的聚合物纳米液滴的结构。我们考虑在半径为R-D的圆形亲液(对单体有吸引力)区域上固着滴,而底物的其余部分是疏液的。研究了液滴形状(包括其接触角)与R-D的变化,并获得了跨越这些液滴的密度分布。另外,研究了吸附在形成狭缝孔的两个壁上的液滴与彼此相对的两个亲液性圆形区域的相互作用,并注意在两壁之间形成液桥。我们研究的主要结果是在变化的壁间距下测量两个基板壁之间的力以及液滴合并的动力学。我们的结果与针对中观而非纳米大小的液滴开发的各种现象学理论进行了比较。 (C)2004年美国物理研究所。

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