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Tunable Supramolecular Assembly and Photoswitchable Conversion of Cyclodextrin/Diphenylalanine-Based 1D and 2D Nanostructures

机译:可调谐超分子组件和基于环糊精/二苯基氨基的1D和2D纳米结构的光学性转化

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摘要

A photocontrolled, interconvertible supramolecular 2D-nanosheet/1D-nanotube system was constructed through the supramolecular assembly of adamantanyl-modified diphenylalanine with azobenzene-bridged bis(beta-cyclodextrin). The nanosheet exhibited a greater fluorescence enhancement effect than the nanotube. Significantly, these nanosheets and nanotubes could interconvert via the photocontrolled trans/cis isomerization of azobenzene linkers in bis(beta-cyclodextrin), and this photo-switchable one-dimensional/two-dimensional morphological interconversion was reversible and recyclable. This enables convenient routes to highly ordered nanostructures with various morphologies and dimensions that can be controlled by external stimuli.
机译:通过具有偶氮苯乙烯 - 桥接双(β-环糊精)的共分子组装,通过共分子组装,通过与偶氮苯乙烯 - 改性的双苯基(β-环糊精)的共分子组装来构建光电控制的相互渗透超分子2D-NanosheCer / 1d-Nanotube系统。 纳米液表现出比纳米管更大的荧光增强效果。 值得注意的是,这些纳米片和纳米管可以通过双(β-环糊精)中的偶氮苯联酯的光控制反式/顺式异构晶体来互连,并且该光可切换的一维/二维形态互连是可逆和可回收的。 这使得能够方便的路线到高度有序的纳米结构,其具有各种形态和尺寸可以通过外部刺激控制。

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