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用于具有耐水性的余辉效应的光控有序到有序主客体自组装转移

Photo-controlled order-to-order host-guest self-assembly transfer for an afterglow effect with water resistance.

作者信息

Liu Mouwei, Wu Bin, Baryshnikov Glib V, Shen Shen, Sun Hao, Gu Xinyan, Ågren Hans, Xu Yifei, Zou Qi, Qu Da-Hui, Zhu Liangliang

机构信息

Department of Macromolecular Science, State Key Laboratory of Molecular Engineering of Polymers, Fudan University Shanghai 200438 China

Department of Science and Technology, Laboratory of Organic Electronics, Linköping University Norrköping 60174 Sweden.

出版信息

Chem Sci. 2024 Jul 2;15(31):12569-12579. doi: 10.1039/d4sc03451a. eCollection 2024 Aug 7.

Abstract

Due to the general incompleteness of photochemical reactions, the photostationary structure in traditional photo-controlled host-guest self-assembly transfer is usually disordered or irregular. This fact readily affects the photoregulation or improvement of related material properties. Herein, a photoexcitation-induced aggregation molecule, hydroxyl hexa(thioaryl)benzene (HB), was grafted into β-cyclodextrin to form a host-guest system. Upon irradiation, the excited state conformational change of HB can drive an order-to-order phase transition of the system, enabling the transfer of the initial linear nanostructure to a photostationary worm-like nanostructure with orderliness and crystallinity capability. Along with the photoexcitation-controlled phase transition, an afterglow effect was obtained from the films prepared by doping the host-guest system into poly(vinyl alcohol). The afterglow effect had a superior water resistance, which successfully overcame the general sensitivity of doped materials with the afterglow effect to water vapor. These results are expected to provide new insights for pushing forward chemical self-assembly from the light perspective, towards materials with superior and stable properties under light treatment.

摘要

由于光化学反应通常不完整,传统光控主客体自组装转移中的光稳定结构通常是无序或不规则的。这一事实很容易影响相关材料性能的光调节或改善。在此,将光激发诱导聚集分子羟基六(硫芳基)苯(HB)接枝到β-环糊精中形成主客体体系。光照后,HB的激发态构象变化可驱动体系发生从有序到有序的相变,使初始线性纳米结构转变为具有有序性和结晶能力的光稳定蠕虫状纳米结构。随着光激发控制的相变,通过将主客体体系掺杂到聚乙烯醇中制备的薄膜获得了余辉效应。该余辉效应具有优异的耐水性,成功克服了具有余辉效应的掺杂材料对水蒸气的普遍敏感性。这些结果有望从光的角度为推动化学自组装提供新的见解,从而制备出在光处理下具有优异和稳定性能的材料。

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