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首页> 外文期刊>Angewandte Chemie >Visualization of Stereoselective Supramolecular Polymers by Chirality-Controlled Energy Transfer
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Visualization of Stereoselective Supramolecular Polymers by Chirality-Controlled Energy Transfer

机译:通过手性控制能量转移可视化立体选择性超分子聚合物

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摘要

Chirality-driven self-sorting is envisaged to efficiently control functional properties in supramolecular materials. However, the challenge arises because of a lack of analytical methods to directly monitor the enantioselectivity of the resulting supramolecular assemblies. Presented herein are two fluorescent core-substituted naphthalene-diimide-based donor and acceptor molecules with minimal structural mismatch and they comprise strong self-recognizing chiral motifs to determine the self-sorting process. As a consequence, stereoselective supramolecular polymerization with an unprecedented chirality control over energy transfer has been achieved. This chirality-controlled energy transfer has been further exploited as an efficient probe to visualize microscopically the chirality driven self-sorting.
机译:设想手性驱动的自分类,以有效地控制超分子材料的功能性质。 然而,由于缺乏直接监测所得超分子组件的对映射性的分析方法而产生挑战。 本文呈现的是两个荧光核 - 取代的萘二亚胺基供体和受体分子,具有最小的结构失配,它们包括强的自识别手性基序,以确定自分拣过程。 因此,已经实现了对能量转移的前所未有的手性控制的立体选择性超分子聚合。 这种手足性控制能量转移进一步被利用为有效的探针,以便在微观上表现微观的行为驱动的自我排序。

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