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The use of circular dichroism spectroscopy for studying the chiral molecular self-assembly: An overview

机译:圆二色光谱在研究手性分子自组装中的应用:概述

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Self-assembly plays an important role in the formation of many chiral biological structures and in the preparation of chiral functional materials. Therefore the control of chirality in synthetic or biological self-assembled systems is important either for the comprehension of recognition phenomena or to obtain materials with predictable and controllable properties. Circular dichroism was developed to study molecular chirality, however, because of its outstanding sensitivity to chiral perturbations of the system under investigation; it has been extended more recently to supramolecular chemistry. In particular, self-assembly processes leading to the formation of chiral supramolecular architectures (and eventually to gels or liquid crystal phases) can be monitored by CD. Furthermore, CD spectroscopy often allows one to obtain structural information on the assembled structures. This review deals with representative contributions to the study of supramolectilar chirality by means of circular dichroism.
机译:自组装在许多手性生物结构的形成和手性功能材料的制备中起着重要作用。因此,在合成或生物自组装系统中,手性的控制对于理解识别现象或获得具有可预测和可控制特性的材料都非常重要。圆二色性的研究是为了研究分子手性,因为它对所研究体系的手性扰动具有杰出的敏感性。最近它已扩展到超分子化学。特别地,可通过CD监测导致手性超分子结构形成(并最终形成凝胶或液晶相)的自组装过程。此外,CD光谱通常允许人们获得组装结构的结构信息。这篇综述涉及通过圆二色性对超上手性的研究的代表性贡献。

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