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通过粉末X射线衍射对微晶金属有机框架进行结构解析。

Structural elucidation of microcrystalline MOFs from powder X-ray diffraction.

作者信息

Martí-Rujas Javier

机构信息

Dipartimento di Chimica, Materiali e Ingegneria Chimica. "Giulio Natta", Politecnico di Milano, Via L. Mancinelli 7, 20131 Milan, Italy.

出版信息

Dalton Trans. 2020 Oct 20;49(40):13897-13916. doi: 10.1039/d0dt02802a.

Abstract

Metal organic frameworks (MOFs), also known as coordination polymers/networks, have experienced a rapid upsurge in the last 20 years in part due to the precise visualization of their atomic arrangement in the solid state. Structure-function relationship properties in MOFs is a key step to understand the potential of a material for its applications in advanced technologies, which can be only understood if full structure determination is carried out. Single crystal X-ray diffraction is the most reliable technique for the 3D description of the atomic arrangement of a crystalline material, but it needs a suitable single crystal both in size and in quality. Sadly, it often occurs that it is not possible to grow crystals of enough quality for single crystal XRD analysis. In MOF synthesis, rather often the products of certain synthetic approaches such as fast crystallization or mechanochemical reactions are obtained as powders. Also, gas, temperature, and solvent induced reactions render single crystals unsuitable for single crystal XRD. In such cases, structure elucidation of MOFs must be carried out using ab initio powder XRD analysis. Unfortunately, structure solution from powder XRD data is more complicated than that from single crystal XRD data. In this article, a short overview of crystal structure solution from powder XRD and how this technique has been applied in the structure solution of MOFs using direct-space strategy is given. Examples of microcrystalline MOFs obtained by solvothermal methods, synthesized by instant synthesis and mechanochemical methods and products obtained after solid-state reactivity are highlighted. The reported cases are challenging structure solution examples carried out by direct-space strategy using powder XRD data, and show that ab initio powder XRD structure solution is a powerful technique that allows many chemical reactions whose products cannot be carried out by single crystal X-ray analysis to be understood. Hopefully, the strength of ab initio powder XRD structure elucidation with the few cases shown in this Perspective will encourage members of this field of research to exploit this technique to make further progress in MOF chemistry.

摘要

金属有机框架材料(MOFs),也被称为配位聚合物/网络,在过去20年中经历了快速发展,部分原因是其固态原子排列的精确可视化。MOFs中的结构-功能关系特性是理解材料在先进技术中应用潜力的关键一步,只有进行完整的结构测定才能理解这一点。单晶X射线衍射是用于描述晶体材料原子排列三维结构的最可靠技术,但它需要尺寸和质量都合适的单晶。遗憾的是,常常无法生长出质量足够好的晶体用于单晶XRD分析。在MOF合成中,某些合成方法(如快速结晶或机械化学反应)的产物往往是粉末状。此外,气体、温度和溶剂引发的反应会使单晶不适用于单晶XRD。在这种情况下,必须使用从头算粉末XRD分析来阐明MOFs的结构。不幸的是,从粉末XRD数据解析结构比从单晶XRD数据解析更复杂。本文简要概述了从粉末XRD解析晶体结构以及该技术如何通过直接空间策略应用于MOFs的结构解析。重点介绍了通过溶剂热法、即时合成法和机械化学法获得的微晶MOFs以及固态反应后得到的产物的实例。所报道的案例是使用粉末XRD数据通过直接空间策略进行的具有挑战性的结构解析实例,表明从头算粉末XRD结构解析是一种强大的技术,能够理解许多无法通过单晶X射线分析进行的化学反应。希望通过本综述中展示的少数案例所体现的从头算粉末XRD结构解析的优势,能鼓励该研究领域的成员利用这一技术在MOF化学方面取得进一步进展。

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