材料科学
液晶
层状结构
差示扫描量热法
共聚物
分散性
热致晶体
光学显微镜
硅氢加成
相(物质)
Crystal(编程语言)
衍射
自组装
化学工程
光学
纳米技术
扫描电子显微镜
高分子化学
光电子学
聚合物
复合材料
液晶
有机化学
化学
程序设计语言
催化作用
工程类
物理
热力学
计算机科学
作者
Koen Nickmans,Albertus P. H. J. Schenning
摘要
Block copolymer self-assembly is a candidate resolution enhancement technique for patterning at future technology nodes. The technology is based on the micro-phase separation of chemically immiscible (eg polar/apolar) block copolymers that contain etch contrast (eg. organic/inorganic) into regular patterns (eg. lamellar or cylindrical) with periodicities between 10 - 100 nm. One of the challenges that remain for the implementation of self-assembly in nanopatterning is extendibility of the technology to smaller features. In contrast to block copolymers, liquid crystals are able to self-assemble at the molecular length scale (1-10 nm). The current work reports on a liquid crystal with inherent etch contrast and its self-assembly behavior. A monodisperse oligo(dimethylsiloxane) liquid crystal is synthesized via hydrosilylation and characterized. The formation of a temperature dependent tilted smectic phase with a periodicity of approximately 3.0 nm is demonstrated via differential scanning calorimetry, polarized optical microscopy, and x-ray diffraction. The director tilt is highly dependent on temperature (20° - 70°), while the layer spacing is relatively temperature independent (2.99 - 3.03 nm). Finally, we show that the liquid crystal forms lamellar sheets in thin films.
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