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首页> 外文期刊>American Chemical Society >Light-Driven Reversible Handedness Inversion in Self-Organized Helical Superstructures
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Light-Driven Reversible Handedness Inversion in Self-Organized Helical Superstructures

机译:自组织螺旋上层建筑中的光驱动可逆惯性反演

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We report here a fast-photon-mode reversible handedness inversion of a self-organized helical superstructure (i.e., a cholesteric liquid crystal phase) using photoisomerizable chiral cyclic dopants. The two light-driven cyclic azobenzenophanes with axial chirality show photochemically reversible trans to cis isomerization in solution without undergoing thermal or photoinduced racemization. As chiral inducing agents, they exhibit good solubility, high helical twisting power, and a large change in helical twisting power due to photoisomerization in three commercially available, structurally different achiral liquid crystal hosts. Therefore, we were able to reversibly tune the reflection colors from blue to near-IR by light irradiation from the induced helical superstructure. More interestingly, the different switching states of the two chiral cyclic dopants were found to be able to induce a helical superstructure of opposite handedness. In order to unambiguously determine the helical switching, we employed a new method that allowed us to directly determine the handedness of the long-pitched self-organized cholesteric phase.
机译:我们在这里报告了使用可光异构的手性环状掺杂剂对自组织的螺旋上层结构(即胆甾型液晶相)进行的快速光子模式可逆性惯性反转。具有轴向手性的两种光驱动的环状偶氮苯甲环烷在溶液中显示出光化学可逆的反式至顺式异构化,而没有经历热或光诱导的消旋作用。作为手性诱导剂,由于在三种市售的,结构不同的非手性液晶主体中的光异构化,它们显示出良好的溶解性,高的螺旋扭曲力以及螺旋扭曲力的大变化。因此,我们能够通过诱导螺旋上层结构的光照射,将蓝色的反射颜色可逆地调整为近红外。更有趣的是,发现两种手性环状掺杂剂的不同转换状态能够诱导相反惯性的螺旋超结构。为了明确确定螺旋转换,我们采用了一种新方法,该方法可以直接确定长间距自组织胆甾醇相的有序性。

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