Département de Chimie, Université de Sherbrooke, Sherbrooke, Québec, Canada J1K 2R1.
Langmuir. 2011 Apr 5;27(7):3867-71. doi: 10.1021/la103649e. Epub 2010 Sep 30.
We report the finding that a chiral cyclopeptide dissolved in a nematic liquid crystal (LC) host could aggregate in a manner that is controlled by the texture (LC director configuration) of a cholesteric phase that is induced by the cyclopeptide itself. On one hand, with the fingerprint texture, where the helical axis formed by rotating LC molecules, that lies in the substrate plane, the cyclopeptide can use the LC texture as a template to aggregate and form long-range-ordered ribbons that mimic the helical configuration of the LC director. On the other hand, with the planar texture, where the helical axis is normal to the substrate plane, the cyclopeptide can migrate into the "oily-streak" defect regions of the cholesteric phase and stabilize a network of defects that dictates the electrooptical response of the LC. This is the first example of a molecular species exhibiting such a structured aggregation and defect stabilization effect in a cholesteric LC, but similar phenomena were previously reported for platinum nanoparticles and silica colloidal particles, respectively, dispersed in a cholesteric LC host. This study provides more evidence for the potential interest of exploring LCs as an anisotropic medium for mediating the aggregation and assembly of cyclopeptides.
我们报告了一种手性环肽在向列液晶(LC)主体中溶解时的发现,该手性环肽可以通过自身诱导的胆甾相的纹理(LC 指向配置)控制方式进行聚集。一方面,在手性指纹纹理中,旋转 LC 分子形成的螺旋轴位于基质平面内,环肽可以将 LC 纹理用作模板进行聚集,并形成类似于 LC 指向螺旋配置的长程有序带状物。另一方面,在手性平面纹理中,螺旋轴垂直于基质平面,环肽可以迁移到胆甾相的“油性条纹”缺陷区域,并稳定缺陷网络,从而控制 LC 的电光响应。这是在胆甾相 LC 中首次发现分子物种表现出这种结构化聚集和缺陷稳定效应的例子,但先前在胆甾相 LC 主体中分别分散的铂纳米粒子和二氧化硅胶体粒子中也报道过类似的现象。这项研究为探索 LC 作为介导环肽聚集和组装的各向异性介质的潜在兴趣提供了更多证据。