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首页> 外文期刊>Angewandte Chemie >Photoresponsive Circular Supramolecular Polymers: A Topological Trap and Photoinduced Ring-Opening Elongation
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Photoresponsive Circular Supramolecular Polymers: A Topological Trap and Photoinduced Ring-Opening Elongation

机译:光响应圆形超分子聚合物:拓扑陷阱和光突出的开环伸长率

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摘要

Topological features of one-dimensional macromolecular chains govern the properties and functionality of natural and synthetic polymers. To address this issue in supramolecular polymers, we synthesized two topologically distinct supramolecular polymers with intrinsic curvature, circular and helically folded nanofibers, from azobenzene-functionalized supramolecular rosettes. When a mixture of circular and helically folded nanofibers was exposed to UV light, selective unfolding of the latter open-ended supramolecular polymers was observed as a result of the curvature-impairing internal force produced by the trans-to-cis photoisomerization of the azobenzene. This distinct sensitivity suggests that the topological features of supramolecular polymers define their mechanical stability. Furthermore, the exposure of circular supramolecular polymers in more polar media to UV irradiation resulted in ring opening followed by chain elongation, thus demonstrating that the circular supramolecular polymer can function as a topological kinetic trap.
机译:一维大分子链的拓扑特征控制天然和合成聚合物的性质和功能。为了在超分子聚合物中解决该问题,我们用来自四唑官能化的超分子玫瑰花丝膜合成了具有本质曲率,圆形和螺旋折叠纳米纤维的两种拓扑上不同的超分子聚合物。当圆形和螺旋折叠纳米纤维的混合物暴露于UV光时,由于通过偶氮苯甲酰苯的反式-CIS光学硅​​白化产生的曲率损伤的内部力,因此观察到后一端的超分子聚合物的选择性展开。这种明显的敏感性表明超分子聚合物的拓扑特征限定了它们的机械稳定性。此外,将圆形超分子聚合物在更偏光的介质中暴露于UV照射,导致环开口,然后是链伸长率,从而证明圆形超分子聚合物可以用作拓扑动力学陷阱。

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