Li Bo, He Tian, Fan Yiqi, Yuan Xinchao, Qiu Huayu, Yin Shouchun
College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou 310036, P. R. China.
Chem Commun (Camb). 2019 Jul 9;55(56):8036-8059. doi: 10.1039/c9cc02472g.
Supramolecular polymers have received considerable attention during the last few decades due to their scientific value in polymer chemistry and profound implications for future developments of advanced materials. Discrete supramolecular coordination complexes (SCCs) with well-defined size, shape, and geometry have been widely employed to construct hierarchical systems by coordination-driven self-assembly with the spontaneous formation of metal-ligand bonds, which results in the formation of well-defined two-dimensional (2D) metallacycles or three-dimensional (3D) metallacages with high functionalities. The incorporation of discrete SCCs into supramolecular polymers by the orthogonal combination of metal-ligand coordination and other noncovalent interactions or covalent bonding could further facilitate the construction of novel supramolecular polymers with hierarchical architectures and multiple functions including controllable uptake and release of guest molecules, providing a flexible platform for the development of smart materials. In this review, the recent progress in metallacycle/metallacage-cored supramolecular polymers that were constructed by the combination of metal-ligand interactions and other orthogonal interactions (including hydrophobic or hydrophilic interactions, hydrogen bonding, van der Waals forces, π-π stacking, electrostatic interactions, host-guest interactions and covalent bonding) has been discussed. In addition, the potential applications of metallacycle/metallacage-cored supramolecular polymers in the areas of light emitting, sensing, bio-imaging, delivery and release, etc., are also presented.
在过去几十年中,超分子聚合物因其在高分子化学中的科学价值以及对先进材料未来发展的深远影响而备受关注。具有明确尺寸、形状和几何结构的离散超分子配位络合物(SCCs)已被广泛用于通过配位驱动的自组装构建分级体系,金属 - 配体键自发形成,从而形成具有高功能性的明确二维(2D)金属环或三维(3D)金属笼。通过金属 - 配体配位与其他非共价相互作用或共价键的正交组合将离散的SCCs掺入超分子聚合物中,可以进一步促进构建具有分级结构和多种功能的新型超分子聚合物,包括客体分子的可控摄取和释放,为智能材料的开发提供了一个灵活的平台。在这篇综述中,讨论了通过金属 - 配体相互作用与其他正交相互作用(包括疏水或亲水相互作用、氢键、范德华力、π - π堆积、静电相互作用、主客体相互作用和共价键)组合构建的以金属环/金属笼为核心的超分子聚合物的最新进展。此外,还介绍了以金属环/金属笼为核心的超分子聚合物在发光、传感、生物成像、递送和释放等领域的潜在应用。