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通过手性凝胶剂与含非手性偶氮苯聚合物的共凝胶化制备手性光致开关薄膜。

Fabrication of chiroptically switchable films via co-gelation of a small chiral gelator with an achiral azobenzene-containing polymer.

机构信息

Beijing National Laboratory for Molecular Science, CAS Key Laboratory of Colloid, Interface and Chemical Thermodynamics, Institute of Chemistry, Chinese Academy of Sciences, Zhongguancun North First Street 2, 100190, Beijing, P. R. China.

出版信息

Soft Matter. 2017 Sep 20;13(36):6129-6136. doi: 10.1039/c7sm00935f.

Abstract

Helical polymers are widely found in nature and synthetic functional materials. Although a number of elaborate strategies have been developed to endow polymers with helicity through either covalent bonds or supramolecular techniques, it still remains a challenge to get the desired helical polymers with controlled handedness in an easy but effective manner. In this study, we report an easily accessible gelation-guided self-assembly system where the chirality of a gelator can be easily transferred to an achiral azobenzene-containing polymer during gelation. It is found that during the process of chiral induction, the induced chirality of the polymer was entirely dominated by the molecular chirality of the gelator. Experimentally, achiral azobenzene-containing polymers with different side-chain lengths were doped into a supramolecular gel system formed with amphiphilic N,N'-bis-(octadecyl)-l(d)-Boc-glutamic (LBG-18 or DBG-18 for short). CD spectra and SEM observation confirmed that the co-assembly of polymer/LBG-18 or polymer/DBG-18 in the xerogel state exhibited supramolecular chirality. More importantly, alternate UV and visible light irradiation on the xerogel film caused the induced CD signal to switch between on and off states. Thus a chiroptical switch was fabricated based on the isomerization of the azo-polymer in xerogel films.

摘要

螺旋聚合物广泛存在于自然界和合成功能材料中。尽管已经开发出许多精细的策略,通过共价键或超分子技术赋予聚合物螺旋性,但仍然难以以简单有效的方式获得具有控制手性的所需螺旋聚合物。在这项研究中,我们报告了一种易于获得的凝胶导向自组装体系,其中凝胶剂的手性可以在凝胶化过程中很容易地转移到非手性含偶氮苯的聚合物上。研究发现,在手性诱导过程中,聚合物的诱导手性完全由凝胶剂的分子手性决定。实验上,将不同侧链长度的非手性含偶氮苯聚合物掺杂到由两亲性 N,N'-双-(十八烷基)-l(d)-Boc-谷氨酸(LBG-18 或 DBG-18)形成的超分子凝胶体系中。圆二色谱(CD)谱和 SEM 观察证实,聚合物/LBG-18 或聚合物/DBG-18 在干凝胶状态下的共组装表现出超分子手性。更重要的是,交替对干凝胶膜进行紫外光和可见光照射会导致诱导 CD 信号在开启和关闭状态之间切换。因此,基于在干凝胶膜中偶氮聚合物的异构化,制造了一个手性光开关。

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