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Light-Controlled Supramolecular Helicity of a Liquid Crystalline Phase Using a Helical Polymer Functionalized with a Single Chiroptical Molecular Switch

机译:液晶相的光控超分子螺旋结构,使用具有单个手性分子开关功能的螺旋聚合物

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摘要

Control over the preferred helical sense of a poly(n-hexyl isocyanate) (PHIC) by using a single light-driven molecular motor, covalently attached at the polymer’s terminus, has been accomplished in solution via a combination of photochemical and thermal isomerizations. Here, we report that after redesigning the photochromic unit to a chiroptical molecular switch, of which the two states are thermally stable but photochemically bistable, the chiral induction to the polymer’s backbone is significantly improved and the handedness of the helical polymer is addressable by irradiation with two different wavelengths of light. Moreover, we show that the chiral information is transmitted, via the macromolecular level of the polyisocyanate, to the supramolecular level of a lyotropic cholesteric liquid crystalline phase consisting of these stiff, rodlike polymers. This allows the magnitude and sign of the supramolecular helical pitch of the liquid crystal film to be fully controlled by light.
机译:通过使用光化学和热异构化相结合的溶液,可以通过使用单个光驱动分子马达(共价连接在聚合物末端)来控制聚(n-己基异氰酸酯)(PHIC)的优选螺旋方向。在这里,我们报告说,在将光致变色单元重新设计为手性分子开关后,这两个状态是热稳定的,但光化学双稳态的,因此显着改善了对聚合物主链的手性诱导,并且可以通过照射来解决螺旋聚合物的旋向性。两种不同波长的光。此外,我们表明,手性信息通过多异氰酸酯的大分子水平传递到由这些刚性的棒状聚合物组成的溶致胆甾型液晶相的超分子水平。这允许液晶膜的超分子螺旋节距的大小和符号被光完全控制。

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