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Directed Self-Assembly of Liquid-Crystalline Molecular Building Blocks for Sub-5 nm Nanopatterning

机译:低于5 nm纳米图案化的液晶分子分子直接定向组装

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The thin-film directed self-assembly of molecular building blocks into oriented nanostructure arrays enables next-generation lithography at the sub-5 nm scale. Currently, the fabrication of inorganic arrays from molecular building blocks is restricted by the limited long-range order and orientation of the materials, as well as suitable methodologies for creating lithographic templates at sub-5 nm dimensions. In recent years, higher-order liquid crystals have emerged as functional thin films for organic electronics, nanoporous membranes, and templated synthesis, which provide opportunities for their use as lithographic templates. By choosing examples from these fields, recent progress toward the design of molecular building blocks is highlighted, with an emphasis on liquid crystals, to access sub-5 nm features, their directed self-assembly into oriented thin films, and, importantly, the fabrication of inorganic arrays. Finally, future challenges regarding sub-5 nm patterning with liquid crystals are discussed.
机译:薄膜定向分子自组装成定向纳米结构阵列的薄膜,可实现5纳米以下的下一代光刻。当前,由分子构件制造无机阵列受到材料的有限的长程顺序和取向以及用于产生低于5nm尺寸的光刻模板的合适方法的限制。近年来,高阶液晶已经成为有机电子,纳米多孔膜和模板化合成的功能性薄膜,为用作光刻模板提供了机会。通过从这些领域中选择示例,重点介绍了分子构建模块设计的最新进展,重点是液晶,以获取5 nm以下的特征,将其定向自组装为定向薄膜,以及重要的是制造无机阵列。最后,讨论了有关用液晶进行亚5 nm图案化的未来挑战。

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