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与非晶态聚合物薄膜上的去湿过程相关的液晶聚合物嵌段高密度刷的形成

Formation of High-Density Brush of Liquid Crystalline Polymer Block Associated with Dewetting Process on Amorphous Polymer Film.

作者信息

Mukai Koji, Hara Mitsuo, Nagano Shusaku, Seki Takahiro

出版信息

Langmuir. 2019 Aug 13;35(32):10397-10404. doi: 10.1021/acs.langmuir.9b01689. Epub 2019 Jul 31.

DOI:10.1021/acs.langmuir.9b01689
PMID:31317747
Abstract

The understanding of polymer dewetting on solid surfaces is significant in both fundamental polymer physics and practical film technologies. When liquid crystalline (LC) polymers are dewetted, LC ordering is involved in the dewetting process. Here, we report on the characteristic dewetting processes of a diblock copolymer composed of a cyanobiphenyl side chain liquid crystalline polymer (SCLCP) block connected with polystyrene (PS) taking place on a PS base film. Thin films of the block copolymer were prepared by the water-floating method onto the PS film, and the dewetting process is observed in a softened state above the glass transition temperature of the PS. At the smectic A phase temperature of the SCLCP block, the dewetted surface layer generated a flat unique fingering pattern leading to a monolayered (two-dimensional) high-density LC polymer brush through the LC ordering. The important role of the anchoring PS block on the base PS film surface is suggested for the formation of highly stretched LC polymer brush. Above the isotropization temperature, in contrast, ordinary three-dimensional droplet morphologies with smooth round edges were observed. By photo-cross-linking the base PS film, the lateral diffusion rate was significantly reduced. This can be applied to an entropy-driven morphology patterning via dewetting. The polymer brush formation and its spatial controls are expected to provide new opportunities for the modification strategies of polymer surfaces.

摘要

理解聚合物在固体表面的去湿现象在基础聚合物物理和实际薄膜技术中都具有重要意义。当液晶(LC)聚合物发生去湿时,去湿过程涉及到液晶有序化。在此,我们报道了一种由与聚苯乙烯(PS)相连的氰基联苯侧链液晶聚合物(SCLCP)嵌段组成的二嵌段共聚物在PS基膜上发生的特征性去湿过程。通过水浮法在PS膜上制备了该嵌段共聚物的薄膜,并在高于PS玻璃化转变温度的软化状态下观察去湿过程。在SCLCP嵌段的近晶A相温度下,去湿的表面层产生了一种独特的平坦指状图案,通过液晶有序化形成了单层(二维)高密度液晶聚合物刷。对于形成高度拉伸的液晶聚合物刷,PS嵌段在基PS膜表面的锚固作用至关重要。相比之下,在各向同性温度以上,观察到具有光滑圆形边缘的普通三维液滴形态。通过对基PS膜进行光交联,横向扩散速率显著降低。这可应用于通过去湿实现的熵驱动形态图案化。聚合物刷的形成及其空间控制有望为聚合物表面改性策略提供新的机遇。

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