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首页> 外文期刊>The Journal of Chemical Physics >Wetting of a chemically heterogeneous surface
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Wetting of a chemically heterogeneous surface

机译:化学异质表面的润湿

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摘要

Theories for inhomogeneous fluids have focused in recent years on wetting, capillary condensation, and solvation forces for model systems where the surface(s) is(are) smooth homogeneous parallel plates, cylinders, or spherical drops. Unfortunately natural systems are more likely to be heterogeneous both in surface shape and surface chemistry. In this paper we discuss the consequences of chemical heterogeneity on wetting. Specifically, a two-dimensional (2D) implementation of a nonlocal density-functional theory is solved for a striped surface model. Both the strength and range of the heterogeneity are varied. Contact angles are calculated, and phase transitions (both the wetting transition and a local layering transition) are located. The wetting properties of the surface are shown to be strongly dependent on the nature of the surface heterogeneity. In addition highly ordered nanoscopic phases are found, and the operational limits for formation of ordered or crystalline phases of nanoscopic extent are discussed.
机译:近年来,非均质流体的理论集中在模型系统的润湿,毛细冷凝和溶剂化力上,这些模型系统的表面是光滑的均质平行平板,圆柱体或球形液滴。不幸的是,天然系统在表面形状和表面化学上都更有可能是异质的。在本文中,我们讨论了化学异质性对润湿的影响。具体来说,针对条纹表面模型解决了非局部密度泛函理论的二维(2D)实现。异质性的强度和范围都不同。计算接触角,并确定相变(润湿转变和局部分层转变)。已显示表面的润湿特性强烈取决于表面异质性的性质。此外,发现了高度有序的纳米相,并讨论了形成纳米级有序或结晶相的操作限制。

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