Department of Materials and Environmental Chemistry, Stockholm University, Stockholm, Sweden.
Nat Protoc. 2022 Oct;17(10):2389-2413. doi: 10.1038/s41596-022-00720-8. Epub 2022 Jul 27.
Metal-organic frameworks (MOFs) have attracted considerable interest due to their well-defined pore architecture and structural tunability on molecular dimensions. While single-crystal X-ray diffraction (SCXRD) has been widely used to elucidate the structures of MOFs at the atomic scale, the formation of large and well-ordered crystals is still a crucial bottleneck for structure determination. To alleviate this challenge, three-dimensional electron diffraction (3D ED) has been developed for structure determination of nano- (submicron-)sized crystals. Such 3D ED data are collected from each single crystal using transmission electron microscopy. In this protocol, we introduce the entire workflow for structural analysis of MOFs by 3D ED, from sample preparation, data acquisition and data processing to structure determination. We describe methods for crystal screening and handling of crystal agglomerates, which are crucial steps in sample preparation for single-crystal 3D ED data collection. We further present how to set up a transmission electron microscope for 3D ED data acquisition and, more importantly, offer suggestions for the optimization of data acquisition conditions. For data processing, including unit cell and space group determination, and intensity integration, we provide guidelines on how to use electron and X-ray crystallography software to process 3D ED data. Finally, we present structure determination from 3D ED data and discuss the important features associated with 3D ED data that need to be considered. We believe that this protocol provides critical details for implementing and utilizing 3D ED as a structure determination platform for nano- (submicron-)sized MOFs as well as other crystalline materials.
金属-有机骨架(MOFs)因其具有明确的孔结构和分子尺寸上的结构可调性而受到广泛关注。虽然单晶 X 射线衍射(SCXRD)已被广泛用于在原子尺度上阐明 MOFs 的结构,但大而有序晶体的形成仍然是结构确定的关键瓶颈。为了缓解这一挑战,三维电子衍射(3D ED)已被开发用于纳米(亚微米)尺寸晶体的结构测定。这种 3D ED 数据是使用透射电子显微镜从每个单晶中收集的。在本方案中,我们介绍了通过 3D ED 对 MOFs 进行结构分析的整个工作流程,包括样品制备、数据采集和数据处理到结构确定。我们描述了晶体筛选和晶体团聚体处理的方法,这是单晶 3D ED 数据采集样品制备的关键步骤。我们进一步介绍了如何为 3D ED 数据采集设置透射电子显微镜,更重要的是,提供了优化数据采集条件的建议。对于数据处理,包括单元和空间群确定以及强度积分,我们提供了如何使用电子和 X 射线晶体学软件处理 3D ED 数据的指南。最后,我们介绍了从 3D ED 数据中确定结构,并讨论了与 3D ED 数据相关的重要特征,需要考虑这些特征。我们相信,本方案为实施和利用 3D ED 作为纳米(亚微米)尺寸 MOFs 以及其他晶体材料的结构确定平台提供了关键细节。