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Photoresponsive chiral molecular crystal for light-directing nanostructures

机译:光导纳米结构的光响应性手性分子晶体

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摘要

A photoresponsive chiral molecular crystal (abbreviated as PCMC) was programmed and synthesizied by localizing a chiral isosorbide at the core between two amphiphilic azobenzene building blocks. Owing to the bent-shaped geometry, the PCMC can self-organize into helical nanoribbons with a highly ordered smectic domain. Since the PCMC has not only an intrinsic molecular chirality but also a photoresponsive molecular function, the helical nanoribbons with single handedness were transformed to flat nanobelts by irradiation with ultraviolet light. Additionally, its chiroptical properties were fully recovered to the initial state upon exposure to visible light. Fine tuning the nanoarchitectures using the remote controllable feature of the PCMC presented in this work can lead the design of novel functional materials that are potentially applicable as optical sensors and biomimetic devices.
机译:通过在两个两亲亚偶氮苯基结构块之间定位在核心的手性异山梨体中,对光响应性手性分子晶体(缩写为PCMC)进行编程和合成。 由于弯曲形状的几何形状,PCMC可以用高度有序的次要域自动组织成螺旋纳米杆。 由于PCMC不仅具有固有的分子手性,而且具有光散分子函数,因此通过用紫外光照射,通过用单方面的螺旋纳米与平坦的纳米杆转化为平坦的纳米座。 另外,在暴露于可见光时,将其含压性能完全回收到初始状态。 使用本工作中提出的PCMC的远程可控特征进行微调纳米建筑可以引导设计的新型功能材料,可能适用于光学传感器和仿生器件。

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