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手性金属有机骨架及其在手性色谱拆分中的应用。

Homochiral metal-organic frameworks and their application in chromatography enantioseparations.

机构信息

Istituto di Chimica Biomolecolare ICB CNR-UOS di Sassari, Traversa La Crucca 3, Regione Baldinca, Li Punti, I-07100 Sassari, Italy.

Institut de Chimie de Strasbourg, UMR 7177, Equipe LASYROC, 1 rue Blaise Pascal, BP 296 R8, 67008 Strasbourg Cedex, France.

出版信息

J Chromatogr A. 2014 Oct 10;1363:11-26. doi: 10.1016/j.chroma.2014.06.064. Epub 2014 Jun 25.

Abstract

The last frontier in the chiral stationary phases (CSPs) field for chromatography enantioseparations is represented by homochiral metal-organic frameworks (MOFs), a class of organic-inorganic hybrid materials built from metal-connecting nodes and organic-bridging ligands. The modular nature of these materials allows to design focused structures by combining properly metal, organic ligands and rigid polytopic spacers. Intriguingly, chiral ligands introduce molecular chirality in the MOF-network as well as homochirality in the secondary structure of materials (such as homohelicity) producing homochiral nets in a manner mimicking biopolymers (proteins, polysaccharides) which are characterized by a definite helical sense associated with the chirality of their building blocks (amino acids or sugars). Nowadays, robust and flexible materials characterized by high porosity and surface area became available by using preparative procedures typical of the so-called reticular synthesis. This review focuses on recent developments in the synthesis and applications of homochiral MOFs as supports for chromatography enantioseparations. Indeed, despite this field is in its infancy, interesting results have been produced and a critical overview of the 12 reported applications for gas chromatography (GC) and high-performance liquid chromatography (HPLC) can orient the reader approaching the field. Mechanistic aspects are shortly discussed and a view regarding future trends in this field is provided.

摘要

在手性固定相(CSPs)领域中,色谱对映体分离的最后一个前沿是同手性金属有机骨架(MOFs),这是一类由金属连接节点和有机桥连配体组成的有机-无机杂化材料。这些材料的模块化性质允许通过适当的金属、有机配体和刚性多齿间隔物的组合来设计有针对性的结构。有趣的是,手性配体在 MOF 网络中引入分子手性,以及在材料的二级结构中引入同手性(如同螺旋性),以类似于生物聚合物(蛋白质、多糖)的方式产生同手性网络,这些聚合物的特征是与它们的构建块(氨基酸或糖)的手性相关的确定的螺旋感。如今,通过使用所谓的网状合成的典型制备程序,获得了具有高孔隙率和表面积的坚固且灵活的材料。本综述重点介绍了同手性 MOFs 作为色谱对映体分离支撑物的合成和应用的最新进展。事实上,尽管这个领域还处于起步阶段,但已经取得了有趣的成果,并且对 12 种已报道的用于气相色谱(GC)和高效液相色谱(HPLC)的应用进行了批判性的概述,可以为读者提供一个接近该领域的视角。简要讨论了机制方面,并提供了该领域未来趋势的观点。

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