Three-dimensional electron diffraction as a complementary technique to powder X-ray diffraction for phase identification and structure solution of powders

作者: Yifeng Yun , Xiaodong Zou , Sven Hovmöller , Wei Wan

DOI: 10.1107/S2052252514028188

关键词:

摘要: Phase identification and structure determination are important and widely used techniques in chemistry, physics and materials science. Recently, two methods for automated three-dimensional electron diffraction (ED) data collection, namely automated diffraction tomography (ADT) and rotation electron diffraction (RED), have been developed. Compared with X-ray diffraction (XRD) and two-dimensional zonal ED, three-dimensional ED methods have many advantages in identifying phases and determining unknown structures. Almost complete three-dimensional ED data can be collected using the ADT and RED methods. Since each ED pattern is usually measured off the zone axes by three-dimensional ED methods, dynamic effects are much reduced compared with zonal ED patterns. Data collection is easy and fast, and can start at any arbitrary orientation of the crystal, which facilitates automation. Three-dimensional ED is a powerful technique for structure identification and structure solution from individual nano- or micron-sized particles, while powder X-ray diffraction (PXRD) provides information from all phases present in a sample. ED suffers from dynamic scattering, while PXRD data are kinematic. Three-dimensional ED methods and PXRD are complementary and their combinations are promising for studying multiphase samples and complicated crystal structures. Here, two three-dimensional ED methods, ADT and RED, are described. Examples are given of combinations of three-dimensional ED methods and PXRD for phase identification and structure determination over a large number of different materials, from Ni–Se–O–Cl crystals, zeolites, germanates, metal–organic frameworks and organic compounds to intermetallics with modulated structures. It is shown that three-dimensional ED is now as feasible as X-ray diffraction for phase identification and structure solution, but still needs further development in order to be as accurate as X-ray diffraction. It is expected that three-dimensional ED methods will become crucially important in the near future.

参考文章(105)
J. A.. Spink, Boris Konstantinovich Vaĭnshteĭn, E.. Feigl, Structure Analysis by Electron Diffraction ,(1964)
Enrico Mugnaioli, Tatiana E. Gorelik, Andrew Stewart, Ute Kolb, “Ab-Initio” Structure Solution of Nano-Crystalline Minerals and Synthetic Materials by Automated Electron Tomography Minerals as Advanced Materials II. pp. 41- 54 ,(2011) , 10.1007/978-3-642-20018-2_5
Gérard Emilien, Timothy Dinan, Ulla Marjatta Lepola, Cécile Durlach, Gérard Emilien, Timothy Dinan, Ulla Marjatta Lepola, Cécile Durlach, Discussion and perspectives Anxiety Disorders. pp. 287- 293 ,(2002) , 10.1007/978-3-0348-8157-9_10
A. J. Wonacott, U. W. Arndt, The Rotation method in crystallography : data collection from macromolecular crystals North-Holland Pub. Co. , sole distributors for the U.S.A. and Canada, Elsevier/North-Holland. ,(1977)
Peter Oleynikov, Xiaodong Zou, Sven Hovmöller, Electron Crystallography: Electron Microscopy and Electron Diffraction ,(2021)
T.E. GORELIK, A.A. STEWART, U. KOLB, Structure solution with automated electron diffraction tomography data: different instrumental approaches. Journal of Microscopy. ,vol. 244, pp. 325- 331 ,(2011) , 10.1111/J.1365-2818.2011.03550.X
Minerals as advanced materials I Springer Berlin Heidelberg. ,(2008) , 10.1007/978-3-540-77123-4
Yue-Biao Zhang, Jie Su, Hiroyasu Furukawa, Yifeng Yun, Felipe Gándara, Adam Duong, Xiaodong Zou, Omar M. Yaghi, Single-Crystal Structure of a Covalent Organic Framework Journal of the American Chemical Society. ,vol. 135, pp. 16336- 16339 ,(2013) , 10.1021/JA409033P
Douglas L. Dorset, Karl G. Strohmaier, Chris E. Kliewer, Avelino Corma, Mariá J. Díaz-Cabañas, Fernando Rey, Christopher J. Gilmore, Crystal Structure of ITQ-26, a 3D Framework with Extra-Large Pores Chemistry of Materials. ,vol. 20, pp. 5325- 5331 ,(2008) , 10.1021/CM801126T
Xiaodong Zou, Anders Hovmöller, Sven Hovmöller, TRICE - A program for reconstructing 3D reciprocal space and determining unit-cell parameters. Ultramicroscopy. ,vol. 98, pp. 187- 193 ,(2004) , 10.1016/J.ULTRAMIC.2003.08.025