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首页> 外文期刊>Advanced materials interfaces >The Formation and Evolution of Creased Morphologies Using Reactive Diffusion in Ultrathin Polymer Brush Platforms
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The Formation and Evolution of Creased Morphologies Using Reactive Diffusion in Ultrathin Polymer Brush Platforms

机译:超薄聚合物刷平台反应扩散的抑制形态的形成与演化

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>Precisely controlling the morphology in thin film coatings has emerged as an important tool used to tune surface properties in a wide variety of applications. Previously, a method is reported to fabricate nanoscale surface creases with a high degree of control over crease size and shape using microcontact printing to perform post‐polymerization modification on reactive polymer brush surfaces. In this work, this approach has been expanded to manipulate crease morphology in reactive thin films, using only a drop of a reactive, viscous polymer, and crease formation has been investigated with a combination of experimental observations and computational validations. The effects of various rate constants of the reactive polymer brush scaffold, hydrostatic pressure within the droplet of reactive polymer, diffusion profile, and the evolution of the creased morphologies with reaction time are examined in order to better understand crease formation in ultrathin films.
机译: >精确地控制薄膜涂层中的形态出现为用于调节各种应用中表面性质的重要工具。以前,据报道,使用微接触印刷在反应性聚合物刷表面上对折痕尺寸和形状进行高度控制以制造具有高度控制的纳米级表面折痕。在这项工作中,这种方法已经扩展以操纵反应性薄膜中的折痕形态,仅使用反应性,粘性聚合物的滴,并通过实验观察和计算验证的组合研究了折痕形成。反应性聚合物刷支架的各种速率常数的影响,反应性聚合物液滴内的静压压力,扩散谱和肾上腺形态的渐变和反应时间的进化,以更好地理解超薄薄膜的折痕形成。

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