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Control of interpenetration and structural transformations in the interpenetrated MOFs

机译:控制互渗透MOF中的互通和结构变换

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Interpenetration is an intriguing phenomenon in metal-organic framework (MOF) structures and considered as one of the framework isomers or supramolecular isomers. This has remarkable influence on the surface area, size and shape of the pores in MOFs. Altering the degree of interpenetration (DOI) significantly modifies the thermal stability and density of the frameworks as well as non-covalent interactions with the guest molecules and between the interpenetrated nets. As a consequence, DOI is expected to provide a greater control on the properties such as sorption of guest molecules, separation, optical properties, thermal stability, and chemical reactivity. In this focused review, we illustrated the influence of experimental conditions on the DOI with selected examples. Further, structural transformation in the solid state between different DOIs in MOFs with same topologies are discussed in detail. In addition, some unusual structural changes between different interpenetrated MOFs with varied dimensionalities and topologies are also exemplified. (C) 2021 Elsevier B.V. All rights reserved.
机译:互通是金属有机骨架(MOF)结构中的有趣现象,并且被认为是框架异构体或超分子异构体之一。这对MOF中的孔的表面积,尺寸和形状具有显着影响。改变互通度(DOI)的程度显着地改变框架的热稳定性和密度以及与客体分子的非共价相互作用以及渗透网之间。因此,预计DOI将对客体分子,分离,光学性质,热稳定性和化学反应性等性质提供更大的控制。在这一重点审查中,我们说明了使用所选实施例的实验条件对DOI的影响。此外,详细讨论了在具有相同拓扑的MOF中的不同DOIS之间的固态的结构转变。此外,还举例说明了具有多种尺寸和拓扑的不同互进的MOF之间的一些不寻常的结构变化。 (c)2021 elestvier b.v.保留所有权利。

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