Hawes Chris S
School of Chemical and Physical Sciences, Keele University, Keele ST5 5BG, UK.
Dalton Trans. 2021 May 14;50(18):6034-6049. doi: 10.1039/d1dt00675d. Epub 2021 Apr 12.
In the design of new metal-organic frameworks, the constant challenges of framework stability and structural predictability continue to influence ligand choice in favour of well-studied dicarboxylates and similar ligands. However, a small subset of known MOF ligands contains suitable functionality for coordination sphere hydrogen bonding which can provide new opportunities in ligand design. Such interactions may serve to support and rigidity the coordination geometry of mononuclear coordination spheres, as well as providing extra thermodynamic and kinetic stabilisation to meet the challenge of hydrolytic stability in these materials. In this perspective, a collection of pyrazole, amine, amide and carboxylic acid containing species are examined through the lens of (primarily) inner-sphere hydrogen bonding. The influence of these interactions is then related to the overall structure, stability and function of these materials, to provide starting points for harnessing these interactions in future materials design.
在新型金属有机框架的设计中,框架稳定性和结构可预测性方面持续存在的挑战,继续影响着配体的选择,使其倾向于研究充分的二羧酸酯及类似配体。然而,已知的金属有机框架配体中有一小部分含有适用于配位球氢键作用的官能团,这可为配体设计提供新机遇。此类相互作用可用于支撑单核配位球的配位几何结构并使其具有刚性,还能提供额外的热力学和动力学稳定性,以应对这些材料水解稳定性方面的挑战。从这个角度出发,通过(主要是)内球氢键作用的视角,对一系列含有吡唑、胺、酰胺和羧酸的物种进行了研究。然后将这些相互作用的影响与这些材料的整体结构、稳定性和功能联系起来,为在未来材料设计中利用这些相互作用提供出发点。