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六方柱状液晶中排列与畴生长的纳米级视图

Nanoscale View of Alignment and Domain Growth in a Hexagonal Columnar Liquid Crystal.

作者信息

Huang Shuoyuan, Cheng Shinian, Ju Jianzhu, Chatterjee Debaditya, Yu Junguang, Bock Harald, Yu Lian, Ediger Mark D, Voyles Paul M

机构信息

Department of Materials Science and Engineering, University of Wisconsin Madison, Madison, Wisconsin 53706, United States.

Department of Chemistry, University of Wisconsin Madison, Madison, Wisconsin 53706, United States.

出版信息

ACS Nano. 2024 Oct 15;18(41):28095-28103. doi: 10.1021/acsnano.4c07507. Epub 2024 Oct 4.

Abstract

Highly ordered liquid crystalline (LC) phases have important potential for organic electronics. We studied the molecular alignment and domain structure in a columnar LC thin film with nanometer resolution during in situ heating using four-dimensional scanning transmission electron microscopy (4D STEM). The initial disordered vapor-deposited LC glass thin film rapidly ordered at its glass transition temperature into a hexagonal columnar phase with small (<10 nm), well-aligned, planar domains (columns oriented parallel to the surface). Upon further heating, the domains coarsen via bulk diffusion, then the film crystallizes, then finally transforms back to an LC phase at an even higher temperature. The LC phase at high temperature shows straight columns of molecules, which we attribute to structure inherited from the intermediate crystalline phase. Nanoscale 4D STEM offers direct insight into the mechanisms of domain reorganization, and intermediate crystallization is a potential approach to manipulate orientational order and texture at the nano- to mesoscale in LC thin films.

摘要

高度有序的液晶(LC)相在有机电子学中具有重要潜力。我们使用四维扫描透射电子显微镜(4D STEM)在原位加热过程中以纳米分辨率研究了柱状LC薄膜中的分子排列和畴结构。初始无序的气相沉积LC玻璃薄膜在其玻璃化转变温度下迅速有序化为具有小尺寸(<10 nm)、排列良好的平面畴(柱体平行于表面取向)的六方柱状相。进一步加热时,畴通过体扩散粗化,然后薄膜结晶,最终在更高温度下变回LC相。高温下的LC相显示出直的分子柱,我们将其归因于从中间结晶相继承的结构。纳米级4D STEM提供了对畴重组机制的直接洞察,中间结晶是一种在LC薄膜中纳米到中尺度上操纵取向有序和织构的潜在方法。

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