Inverting the Circularly Polarized Luminescence Handedness of Chiral Supramolecular Polymers Using Temperature.

IF 16.9
Teodor-Aurelian Cucuiet, Andreas Vargas Jentzsch, Flavio Picini, Mounir Maaloum, Guillaume Raffy, Emilie Moulin, Dario M Bassani, Nicolas Giuseppone
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Abstract

The supramolecular polymerization and chiroptical properties of two enantiopure triarylamine trisamide (TATA) monomers bearing aggregation-induced emissive tetraphenylethene (TPE) units are described. A monosubstituted and a trisubstituted monomer were synthesized and their self-assembly was investigated upon either fast or slow cooling of chlorobenzene solutions. Depending on the cooling rate, two distinct fluorescent self-assemblies of opposite supramolecular chiralities were obtained from each monomer. Both the TATA and the TPE units were found to play important roles in the self-assembly process and chiroptical properties. Remarkably, the self-assembly of the monosubstituted monomer gave rise to a strong circularly polarized luminescence originating from the TATA core (glum values as high as |1.8·10-2| in solution) with opposite cooling-rate-dependent handedness.

利用温度反转手性超分子聚合物的圆偏振发光手性。
描述了两种携带聚集诱导发射四苯乙烯(TPE)单元的对映纯三芳胺三酰胺(TATA)单体的超分子聚合及其chiroptic性能。合成了一种单取代单体和一种三取代单体,并研究了它们在氯苯溶液快速或缓慢冷却下的自组装。根据冷却速率,从每个单体中获得两个不同的超分子手性的荧光自组装体。发现TATA和TPE单元在自组装过程和热学性能中起重要作用。值得注意的是,单取代单体的自组装产生了来自TATA核心的强圆偏振发光(溶液中的glum值高达|.8·10-2|),具有相反的依赖于冷却速率的手性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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