自发分辨的多重超分子螺旋的形成

IF 3.1 Q2 CHEMISTRY, MULTIDISCIPLINARY ChemSystemsChem Pub Date : 2023-01-25 DOI:10.1002/syst.202200043
Peimin Weng, Dr. Xiaosheng Yan, Prof. Dr. Yun-Bao Jiang
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引用次数: 0

摘要

将超分子螺旋与形成砾岩晶体的自发分解联系起来,对于对映纯化合物的生产以及对天然同手性的理解都具有重要意义。虽然沿一维超分子螺旋链轴的同手性延伸是有利的,但砾岩结晶需要三维同手性框架。这启发我们探索通过结晶过程中形成多个超分子螺旋来实现自发分解的新途径。这个概念概述和回顾了砾岩晶体中发现的多个超分子螺旋,即。沿着一个晶体轴有三个超分子螺旋,沿着不同的晶体轴有两个或三个超分子螺旋,然后我们观察到在超分子螺旋形成过程中,螺旋结构单元的螺旋度的同手性延长,以及氨基酸丙氨酸的自发分解,丙氨酸通过沿两个不同的结晶轴形成超分子螺旋而形成螺旋状的氮肽衍生物。
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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Formation of Multiple Supramolecular Helices for Spontaneous Resolution

Relating supramolecular helices to the spontaneous resolution that generates conglomerate crystals is meaningful to the production of enantiopure compounds and to the understanding of natural homochirality as well. While homochiral elongation is favored along the axis of 1D supramolecular helical chains, conglomerate crystallization requires a 3D homochiral framework. This inspires us to explore new avenues to the spontaneous resolution through the formation of multiple supramolecular helices during crystallization. This Concept outlines and reviews multiple supramolecular helices found in the conglomerate crystals, i. e. three supramolecular helices along one crystallographic axis and two or three supramolecular helices along different crystallographic axes, followed by our observations of homochiral elongation of the helicity of the helical building blocks, the azapeptides, during the formation of supramolecular helices, as well as the spontaneous resolution of amino acid alanine that is made into a helical azapeptide derivative via the formation of supramolecular helices along two different crystallographic axes.

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