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Propagation of nanopatterned substrate templated ordering of block copolymers in thick films

机译:嵌段共聚物在厚膜中纳米图案化基材模板化有序化的传播

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摘要

Control over the orientation of a symmetric block copolymer lamellar morphology using a striped, chemically heterogeneous surface has been established. Films of symmetric diblock copolymers of poly(styrene-bloch-methyl methacrylate) solution cast onto silicon oxide substrates striped with periodic, 20 nm wide gold lines show lamellar microdomain orientation perpendicular to the substrate plane and parallel to the striping. Commensurability of the block copolymer and substrate stripe period is found to be essential to produce such a surface-directed morphology. A mismatch in length scale of only +/-10% is sufficient to lose control over the microdomain orientation. This window of commensurability for thick films is much smaller than that found previously for ultrathin films. Consequently, more stringent conditions are met in unconfined films to direct the morphology with the surface. The distance over which the orientation of the microdomains persists is found to depend on the ordering kinetics, scaling with copolymer molecular weight, and is independent of the microdomain orientation at the surface. [References: 32]
机译:已经建立了使用条纹状,化学异质性表面控制对称嵌段共聚物层状形态的取向的控制。流延到用周期性20 nm宽金线条纹的氧化硅基板上的聚(苯乙烯-blob-甲基丙烯酸甲酯)溶液的对称二嵌段共聚物薄膜显示出垂直于基板平面且平行于条纹的层状微区取向。发现嵌段共聚物和底物条纹时间的可比性对于产生这种表面定向的形态至关重要。长度比例的不匹配仅为+/- 10%,足以失去对微区取向的控制。厚膜的可比性窗口远小于以前的超薄膜。因此,在无限制的薄膜中满足更严格的条件以指导表面形态。发现微区取向持续存在的距离取决于有序动力学,随共聚物分子量缩放,并且与表面上的微区取向无关。 [参考:32]

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