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基于金属-金属相互作用的超分子功能分子材料的设计与构建。

Toward the Design and Construction of Supramolecular Functional Molecular Materials Based on Metal-Metal Interactions.

机构信息

Institute of Molecular Functional Materials, State Key Laboratory of Synthetic Chemistry and Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, People's Republic of China.

出版信息

J Am Chem Soc. 2022 Dec 21;144(50):22805-22825. doi: 10.1021/jacs.2c08551. Epub 2022 Dec 9.

Abstract

Supramolecular functional materials represent an emerging class of materials that have been governed by the supramolecular chemistry of self-assembled molecules. Such high-order molecular hierarchies have been stabilized by various kinds of noncovalent intermolecular forces including hydrogen bonding, electrostatic, donor-acceptor, π-π stacking interactions, and dispersion forces. Recently, metal-metal interactions have also emerged as an unconventional type of noncovalent interaction that is unique in the metal complex system for the construction of self-assembled metal-based materials. These metal-metal interactions have further imparted the self-assembled materials with rich spectroscopic functionalities. However, the systematic control of these hierarchical architectures through metal-metal interactions remains challenging. In this Perspective, we aim to stimulate research direction in the field with the utilization of such intriguing and unique directional noncovalent metal-metal interactions as one of the driving forces, highlighting the roles and significance of metal-metal interactions and ultimately facilitating a controlled and rational design and synthesis of metallosupramolecular functional materials with rich spectroscopic properties and huge potential for various applications.

摘要

超分子功能材料代表了一类新兴的材料,它们受自组装分子的超分子化学控制。这种高级分子层次结构通过各种非共价分子间力稳定,包括氢键、静电、供体-受体、π-π 堆积相互作用和色散力。最近,金属-金属相互作用也作为一种非传统的非共价相互作用出现,在金属配合物体系中对于构建自组装的基于金属的材料是独特的。这些金属-金属相互作用进一步赋予了自组装材料丰富的光谱功能。然而,通过金属-金属相互作用对这些分级结构进行系统控制仍然具有挑战性。在本观点中,我们旨在通过利用这种有趣且独特的定向非共价金属-金属相互作用作为驱动力之一,激发该领域的研究方向,突出金属-金属相互作用的作用和意义,并最终促进具有丰富光谱性质和巨大应用潜力的金属超分子功能材料的可控和合理设计与合成。

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