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Defect structure in thin films of a lamellar block copolymer self-assembled on neutral homogeneous and chemically nanopatterned surfaces

机译:在中性均质和化学纳米图案化表面上自组装的层状嵌段共聚物薄膜中的缺陷结构

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摘要

Various defect structures in a symmetric block copolymer self-assembled in thin films on neutral homogeneous and chemically nanopatterned surfaces were investigated. On neutral homogeneous surfaces, a lamellar morphology lacking long-range order was observed with a high density of defects such as dislocations and disclinations in the two-dimensional plane of the film. On chemically patterned surfaces, the commensurability between the periodicity of the surface pattern and the block copolymer lamellae determined the final structure. When the surface pattern period was commensurate with the natural lamellar period, well-registered defect-free lamellar structures were obtained. In contrast, if the length scales were incommensurate, the formation of new structures such as dislocation dipoles, undulated lamellae, and tilted lamellae was observed. Our present work provides a detailed analysis of these new defect structures. In particular, a model describing the three-dimensional structure of the undulated morphology is suggested.
机译:研究了在中性均质和化学纳米图案化表面上自组装成薄膜的对称嵌段共聚物中的各种缺陷结构。在中性均质表面上,观察到缺乏长程有序的层状形态,并且在膜的二维平面中具有高密度的缺陷,例如位错和错位。在化学图案化的表面上,表面图案的周期性与嵌段共聚物薄片之间的可比性决定了最终结构。当表面图案周期与自然层状周期相称时,获得了良好配准的无缺陷的层状结构。相反,如果长度尺度不相称,则会观察到新结构的形成,例如位错偶极子,起伏的薄片和倾斜的薄片。我们目前的工作提供了对这些新缺陷结构的详细分析。特别地,提出了描述起伏形态的三维结构的模型。

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