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手性金属有机框架在对映体选择性分离与检测中的研究进展

Recent progress of chiral metal-organic frameworks in enantioselective separation and detection.

作者信息

Chen Huiting, Xia Ling, Li Gongke

机构信息

School of Chemistry, Sun Yat-Sen University, Guangzhou, 510006, People's Republic of China.

出版信息

Mikrochim Acta. 2024 Oct 2;191(11):640. doi: 10.1007/s00604-024-06729-y.

Abstract

Chiral compounds are abundantly distributed in both the natural world and biological systems. It is crucial to identify and detect chiral compounds in living systems or to separate and determine them in the natural environment. Many researchers have developed a range of chiral materials with different functionalizations to separate and detect chiral substances. Chiral metal-organic frameworks (CMOFs) have the potential to be used in enantioselective separation and detection due to their large surface areas, regulated framework topologies, particular substrate interactions, and accessible chiral sites. CMOFs contribute significantly to the development of enantiomer separation and detection in medicine, agriculture, food, environment, and other fields. This review focuses on four synthesis methods of CMOFs and their applications in chiral separation and chiral sensing in the past five years, mainly including chromatographic separation, membrane separation, optical sensing, electrochemical sensing, and other sensing methods. Finally, the challenges and potential growth direction of CMOFs in enantiomer separation and detection are discussed and prospected.

摘要

手性化合物广泛分布于自然界和生物系统中。在生命系统中识别和检测手性化合物,或在自然环境中分离和测定它们至关重要。许多研究人员已经开发出一系列具有不同功能化的手性材料来分离和检测手性物质。手性金属有机框架(CMOFs)由于其大的表面积、规整的框架拓扑结构、特定的底物相互作用和可及的手性位点,具有用于对映体选择性分离和检测的潜力。CMOFs在医药、农业、食品、环境等领域的对映体分离和检测发展中做出了重要贡献。本文综述了过去五年中CMOFs的四种合成方法及其在手性分离和手性传感中的应用,主要包括色谱分离、膜分离、光学传感、电化学传感等传感方法。最后,对CMOFs在对映体分离和检测中的挑战和潜在发展方向进行了讨论和展望。

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