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Film instability induced evolution of hierarchical structures in annealed ultrathin films of an asymmetric block copolymer on polar substrates

机译:膜的不稳定性导致极性基底上不对称嵌段共聚物的退火超薄膜中分层结构的演化

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With an atomic-force microscope and a grazing-incidence small-angle X-ray scattering we studied ex situ the evolution of hierarchical structures in isothermally annealed ultrathin films of asymmetric polystyrene-block- poly(methyl methacrylate) P(S-b-MMA) that dewetted on polar substrates via a mechanism involving nucleation and growth. Film instability causes the surface to acquire an undulating thickness through incommensurability, producing not only the relief structures on a micrometer scale but also mesophase-separated domains on a nanometer scale. The dewetted morphologies strongly influence the ordering behavior of the nanoscale domains. The noncylindrical nanostructures become stable at the curved edges of the relief microstructures in the destabilized P(S-b-MMA) films, for which a preferential wetting of the PS block with the free surface is prohibited. Additionally, the shape of relief structures as result of film instability correlates with the formation of mesophase-separated nanodomains. At early stages of film instability, the formation of parallel-oriented PMMA cylindrical nanodomains increases the deformation energy and it further persists to force the shape of relief structures between irregular holes to have a facet-wedge shape. However, those relief structures are expected to be not at equilibrium. At high temperatures, the relief structures between irregular holes progressively developed to form hemispherical-cap drops accompanied by a transformation of cylindrical into noncylindrical nanodomains at curved surfaces.
机译:利用原子力显微镜和掠入射小角度X射线散射,我们对非对称聚苯乙烯嵌段聚甲基丙烯酸甲酯P(Sb-MMA)的等温退火超薄膜的异位结构演化进行了研究。通过涉及成核和生长的机制在极性基材上润湿。膜的不稳定性导致表面通过不可共度获得起伏的厚度,不仅产生微米级的浮雕结构,而且产生纳米级的中间相分离的畴。湿润的形态强烈影响纳米级域的有序行为。非圆柱形纳米结构在不稳定的P(S-b-MMA)膜中,在浮雕微结构的弯曲边缘处变得稳定,因此禁止优先用自由表面润湿PS块。另外,由膜不稳定性导致的浮雕结构的形状与中间相分离的纳米域的形成有关。在膜不稳定性的早期阶段,平行取向的PMMA圆柱形纳米域的形成增加了变形能,并且进一步持续迫使不规则孔之间的凹凸结构的形状具有小面楔形形状。但是,这些浮雕结构预计不会达到平衡。在高温下,不规则孔之间的浮雕结构逐渐发展为形成半球形帽状液滴,并伴随着在弯曲表面上圆柱形到非圆柱形纳米域的转变。

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