首页> 外文期刊>Physical Review, B. Condensed Matter >Symmetry breaking in self-assembled monolayers on solid surfaces. II. Anisotropic substrate elasticity - art. no. 205418
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Symmetry breaking in self-assembled monolayers on solid surfaces. II. Anisotropic substrate elasticity - art. no. 205418

机译:固态表面上自组装单层的对称性破裂。二。各向异性基材的弹性-艺术没有。 205418

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On a solid surface a monolayer mixture may separate into two phases. The phases can self-assemble into a variety of patterns, with the feature size on the scale of 1-100 nm. This paper studies how the elastic anisotropy of the substrate affects the patterns. The substrate is taken to be of cubic crystal symmetry, although the method developed can be readily extended to treat substrates of any other crystalline symmetry. The surface stress differs from one phase to the other, and the difference refines the phases to reduce the elastic energy. The phase boundary energy tends to coarsen the phases. The two competing effects set the phase sizes and the phase patterns. The anisotropy of the substrate elasticity breaks the symmetry of the system. We formulate a phase field model on the basis of this physical picture. The numerical simulation shows that stripes tend to orient along the two compliant directions of the substrate, forming a tweedlike pattern. A square lattice of dots can also be obtained when the anisotropy is weak and the average concentration sufficiently deviates from half filling. We interpret these findings in terms of free energy minimization. [References: 16]
机译:在固体表面上,单层混合物可分为两相。这些相可以自组装成各种样式,特征尺寸为1-100 nm。本文研究了基底的弹性各向异性如何影响图案。尽管所开发的方法可以容易地扩展到处理任何其他晶体对称的衬底,但是衬底被认为是立方晶体对称的。表面应力在一个相与另一个相之间是不同的,并且该差异细化了相以减小弹性能。相界能趋于使相变粗。这两个相互竞争的效果设定了相位大小和相位模式。基底弹性的各向异性破坏了系统的对称性。我们基于此物理图像制定相场模型。数值模拟表明,条纹倾向于沿着基板的两个顺应方向取向,从而形成花呢样的图案。当各向异性较弱并且平均浓度充分偏离半填充时,也可以得到点的方阵。我们以自由能最小化来解释这些发现。 [参考:16]

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