Smith Kyle T, Stylianou Kyriakos C
Materials Discovery Laboratory (MaD Lab), Department of Chemistry, Oregon State University, 153 Gilbert Hall, OR 97331, Corvallis, Oregon, USA.
Dalton Trans. 2023 Nov 21;52(45):16578-16585. doi: 10.1039/d3dt01936e.
Reticular chemistry has proven to be invaluable over time, thanks to the structural versatility, and tailored porosity observed in structures like metal-organic frameworks (MOFs), covalent-organic frameworks (COFs), and metal-organic polyhedra (MOPs). Despite the wide array of ligands and metals available for synthesizing MOFs, they are still somewhat constrained by the reliance on conditions and the focus on generating MOFs with single ligand and metal. To surpass these limitations, researchers have established strategies to generate multivariate (MTV) MOF structures incorporating more than one ligand/metal into the crystal lattice. MTV-MOFs have demonstrated enhanced properties by virtue of the additional functionalities incorporated within their structures. One approach to developing MTV-MOFs is through post-synthetic modification (PSM), where new functionalities are introduced after the initial synthesis, thereby achieving the enhanced properties of MTV-MOFs even in cases where the new functionalities are incompatible with MOF synthesis.
随着时间的推移,网状化学已被证明具有极高的价值,这得益于在金属有机框架(MOF)、共价有机框架(COF)和金属有机多面体(MOP)等结构中观察到的结构多样性和定制孔隙率。尽管有大量的配体和金属可用于合成MOF,但它们在一定程度上仍受限于对条件的依赖以及对生成具有单一配体和金属的MOF的关注。为了克服这些限制,研究人员已经建立了策略来生成多变量(MTV)MOF结构,即将不止一种配体/金属纳入晶格。MTV-MOF凭借其结构中包含的额外功能展现出了增强的性能。开发MTV-MOF的一种方法是通过后合成修饰(PSM),即在初始合成后引入新功能,从而即使在新功能与MOF合成不相容的情况下也能实现MTV-MOF的性能增强。