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近晶“蓝相”中的光学各向同性与虹彩现象。

Optical isotropy and iridescence in a smectic 'blue phase'.

作者信息

Yamamoto Jun, Nishiyama Isa, Inoue Miyoshi, Yokoyama Hiroshi

机构信息

ERATO Yokoyama Nano-structured Liquid Crystal Project, JST, 5-9-9 Tokodai, Tsukuba 300-2635, Japan.

出版信息

Nature. 2005 Sep 22;437(7058):525-8. doi: 10.1038/nature04034.

Abstract

When liquid crystal molecules are chiral, the twisted structure competes with spatially uniform liquid crystalline orders, resulting in a variety of modulated liquid crystal phases, such as the cholesteric blue phase, twist grain boundary and smectic blue phases. Here we report a liquid crystal smectic blue phase (SmBP(iso)), formed from a two-component mixture containing a chiral monomer and a 'twin' containing two repeat units of the first molecule connected by a linear hydrocarbon spacer. The phase exhibits the simultaneous presence of finite local-order parameters of helices and smectic layers, without any discontinuity on a mesoscopic length scale. The anomalous softening of elasticity due to a strong reduction in entropy caused by mixing the monomer and the twin permits the seamless coexistence of these two competing liquid crystal orders. The new phase spontaneously exhibits an optically isotropic but uniformly iridescent colour and automatically acquires spherical symmetry, so that the associated photonic band gap maintains the same symmetry despite the local liquid crystalline order. We expect a range of unusual optical transmission properties based on this three-dimensional isotropic structure, and complete tunability due to the intrinsic softness and responsiveness of the liquid crystalline order against external fields.

摘要

当液晶分子具有手性时,扭曲结构会与空间均匀的液晶有序结构相互竞争,从而产生多种调制液晶相,如胆甾相蓝相、扭曲晶界相和近晶相蓝相。在此,我们报道了一种近晶相蓝相(SmBP(iso)),它由一种包含手性单体和一个“孪体”的双组分混合物形成,该“孪体”包含两个通过线性烃间隔基连接的第一分子的重复单元。该相同时呈现出螺旋和近晶层的有限局部有序参数,在介观长度尺度上没有任何不连续性。由于单体和孪体混合导致熵大幅降低,弹性出现异常软化,这使得这两种相互竞争的液晶有序结构能够无缝共存。新相自发呈现出光学各向同性但颜色均匀呈虹彩的特性,并自动获得球对称性,因此尽管存在局部液晶有序,相关的光子带隙仍保持相同的对称性。基于这种三维各向同性结构,我们预期会有一系列不同寻常的光传输特性,并且由于液晶有序结构对外部场的固有柔软性和响应性,还具有完全的可调性。

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