Fu Hongru, Jiang Yuying, Wang Fei, Zhang Jian
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China.
College of Chemistry and Chemical Engineering, Luoyang Normal University, Luoyang 471934, China.
Nanomaterials (Basel). 2021 Oct 21;11(11):2791. doi: 10.3390/nano11112791.
Metal-Organic Frameworks (MOFs) as a class of crystalline materials are constructed using metal nodes and organic spacers. Polydentate N-donor ligands play a mainstay-type role in the construction of metal-organic frameworks, especially cationic MOFs. Highly stable cationic MOFs with high porosity and open channels exhibit distinct advantages, they can act as a powerful ion exchange platform for the capture of toxic heavy-metal oxoanions through a Single-Crystal to Single-Crystal (SC-SC) pattern. Porous luminescent MOFs can act as nano-sized containers to encapsulate guest emitters and construct multi-emitter materials for chemical sensing. This feature article reviews the synthesis and application of porous Metal-Organic Frameworks based on tridentate ligand tris (4-(1H-imidazol-1-yl) phenyl) amine (TIPA) and focuses on design strategies for the synthesis of TIPA-dominated Metal-Organic Frameworks with high porosity and stability. The design strategies are integrated into four types: small organic molecule as auxiliaries, inorganic oxyanion as auxiliaries, small organic molecule as secondary linkers, and metal clusters as nodes. The applications of ratiometric sensing, the adsorption of oxyanions contaminants from water, and small molecule gas storage are summarized. We hope to provide experience and inspiration in the design and construction of highly porous MOFs base on polydentate N-donor ligands.
金属有机框架材料(MOFs)作为一类晶体材料,是由金属节点和有机间隔体构建而成。多齿含氮配体在金属有机框架材料的构建中发挥着支柱型作用,尤其是在阳离子MOFs的构建中。具有高孔隙率和开放通道的高度稳定的阳离子MOFs展现出明显优势,它们可作为强大的离子交换平台,通过单晶到单晶(SC-SC)模式捕获有毒重金属含氧阴离子。多孔发光MOFs可作为纳米尺寸的容器来封装客体发光体,并构建用于化学传感的多发光体材料。这篇专题文章综述了基于三齿配体三(4-(1H-咪唑-1-基)苯基)胺(TIPA)的多孔金属有机框架材料的合成与应用,并重点关注具有高孔隙率和稳定性的以TIPA为主的金属有机框架材料的合成设计策略。这些设计策略可归纳为四类:以小分子有机物为助剂、以无机含氧阴离子为助剂、以小分子有机物为第二连接体以及以金属簇为节点。文章总结了比率传感、从水中吸附含氧阴离子污染物以及小分子气体存储等应用。我们希望能为基于多齿含氮配体设计和构建高孔隙率MOFs提供经验和启发。