EaStCHEM School of Chemistry, University of St Andrews, Purdie Building, St Andrews, KY16 9ST, UK.
Chem Soc Rev. 2017 Aug 29;46(17):5444-5462. doi: 10.1039/c7cs00187h.
Metal-organic frameworks (MOFs) are some of the most exciting materials in current science. Their utility and diversity of applications depends on a combination of their chemistry, their framework topology and the spatial dimensions of their pores. In this review we concentrate on the chemistry of MOFs. Specifically we bring together many aspects of MOFs that underpin their stability, reactivity and dynamic behaviour within a common theme related to (changes in) metal-ligand bonding. In each area we provide examples to illustrate the behaviour and discuss it in the context of metal lability and coordination changes. Starting with flexible behaviour in which metal-linker bonds undergo deformation rather than cleavage, we then consider coordination changes that lead to open metal sites, changes in framework topology, framework dimensionality or degree of network interpenetration. We show how these changes are linked to development of new properties, including changes in magnetic behaviour, gas adsorption characteristics, construction of composite MOFs and amorphous MOFs, as well as providing new synthetic routes for MOF preparation. We discuss how the lability of the species that make up the MOFs can affect aspects from their synthesis to the possibility of metal and linker exchange reactions that may lead to defects and disorder. The final section reviews hemilability in MOFs, where regions of different chemical behaviour within MOFs can lead to unusual properties, such as self-accelerating and ultraselective adsorption.
金属-有机骨架(MOFs)是当前科学中最令人兴奋的材料之一。它们的用途和应用的多样性取决于它们的化学性质、骨架拓扑结构和孔的空间维度的结合。在这篇综述中,我们专注于 MOFs 的化学性质。具体来说,我们将许多支撑 MOFs 稳定性、反应性和动态行为的方面结合在一起,这些方面与(金属-配体键的)变化有关。在每个领域,我们都提供了一些例子来说明行为,并在金属的不稳定性和配位变化的背景下讨论了这些行为。从金属-配体键发生变形而不是断裂的柔性行为开始,然后考虑导致开放金属位点、骨架拓扑变化、骨架维度或网络贯穿程度变化的配位变化。我们展示了这些变化如何与新性质的发展相关联,包括磁性质的变化、气体吸附特性、复合 MOFs 和无定形 MOFs 的构建,以及为 MOF 制备提供新的合成途径。我们讨论了构成 MOFs 的物种的不稳定性如何影响从合成到可能导致缺陷和无序的金属和配体交换反应的各个方面。最后一部分综述了 MOFs 中的半配位性,其中 MOFs 内不同化学行为的区域可以导致不寻常的性质,如自加速和超选择性吸附。