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宏观控制基于咪唑鎓的纳米结构光响应液晶的离子传输途径。

Macroscopic photocontrol of ion-transporting pathways of a nanostructured imidazolium-based photoresponsive liquid crystal.

机构信息

Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo , Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

J Am Chem Soc. 2014 Jul 9;136(27):9552-5. doi: 10.1021/ja5041573. Epub 2014 Jun 27.

Abstract

The photocontrol of the macroscopic alignment of nanostructured 2D ion-transporting pathways is described. The uniplanar homogeneous alignment of the thermotropic smectic (Sm) liquid-crystalline (LC) phase has been successfully achieved via photoinduced reorientation of the azobenzene groups of the imidazolium-based LC material. The ionic layers of the Sm LC phase are macroscopically oriented perpendicular to the surface of the glass substrate. The oriented films show anisotropic ion conduction in the Sm phase. This is the first example of the macroscopic photoalignment of ion-conductive LC arrays. Reversible switching of homeotropic and homogeneous alignments has also been achieved for the LC material. These materials and the alignment methodology may be useful in the development of ion-based circuits and memory devices.

摘要

本文描述了通过光诱导各向异性重新取向偶氮苯基团来实现二维离子传输通道结构的宏观各向异性排列的光控。基于离子液体的各向同性近晶相(Sm)液晶的单平面均匀排列已通过光诱导偶氮苯基团的各向异性重新取向成功实现。Sm 液晶相的离子层宏观上垂直于玻璃基底表面排列。各向异性排列的薄膜在 Sm 相表现出各向异性离子输运。这是首例离子传导型 LC 阵列的宏观光控排列的实例。这种液晶材料的垂直排列和各向同性排列也可以实现可逆转换。这些材料和排列方法可能有助于离子基电路和存储器件的发展。

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