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Crystallographic studies of gas sorption in metal-organic frameworks.

机译:金属 - 有机骨架中气体吸附的晶体学研究。

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摘要

Metal-organic frameworks (MOFs) are a class of porous crystalline materials of modular design. One of the primary applications of these materials is in the adsorption and separation of gases, with potential benefits to the energy, transport and medical sectors. In situ crystallography of MOFs under gas atmospheres has enabled the behaviour of the frameworks under gas loading to be investigated and has established the precise location of adsorbed gas molecules in a significant number of MOFs. This article reviews progress in such crystallographic studies, which has taken place over the past decade, but has its origins in earlier studies of zeolites, clathrates etc. The review considers studies by single-crystal or powder diffraction using either X-rays or neutrons. Features of MOFs that strongly affect gas sorption behaviour are discussed in the context of in situ crystallographic studies, specifically framework flexibility, and the presence of (organic) functional groups and unsaturated (open) metal sites within pores that can form specific interactions with gas molecules.
机译:金属有机框架(MOF)是一类模块化设计的多孔晶体材料。这些材料的主要应用之一是气体的吸附和分离,对能源,运输和医疗领域具有潜在的好处。 MOF在气体气氛下的原位结晶学使得能够研究骨架在气体负载下的行为,并建立了许多MOF中吸附气体分子的精确位置。本文回顾了过去十年中进行的此类晶体学研究的进展,但其起源于早期的沸石,包合物等研究。该综述考虑了使用X射线或中子进行单晶或粉末衍射的研究。在原位晶体学研究的背景下讨论了会强烈影响气体吸附行为的MOF的特征,特别是框架的灵活性,以及​​孔内(有机)官能团和不饱和(开放)金属位点的存在,这些位点可与气体分子形成特定的相互作用。

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