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从一组独立的电子衍射带状图确定晶胞参数。

Unit-cell parameters determination from a set of independent electron diffraction zonal patterns.

作者信息

Gorelik Tatiana E, Miehe Gerhard, Bücker Robert, Yoshida Kaname

机构信息

Ernst Ruska-Center (ERC-1), Forschungszentrum Jülich, Wilhelm-Johnen-Straße, Jülich, 52428, Germany.

Darmstadt Technical University, Schnittspahnstraße 9, Darmstadt, 64287, Germany.

出版信息

Acta Crystallogr A Found Adv. 2025 Mar 1;81(Pt 2):124-136. doi: 10.1107/S2053273325000300. Epub 2025 Jan 31.

Abstract

Due to the short de Broglie wavelength of electrons compared with X-rays, the curvature of their Ewald sphere is low, and individual electron diffraction patterns are nearly flat in reciprocal space. As a result, a reliable unit-cell determination from a set of randomly oriented electron diffraction patterns, an essential step in serial electron diffraction, becomes a non-trivial task. Here we describe an algorithm for unit-cell determination from a set of independent electron diffraction patterns, as implemented in the program PIEP (Program for Interpreting Electron diffraction Patterns), written in the early 1990s. We evaluate the performance of the algorithm by unit-cell determination of two known structures - copper perchlorophthalocyanine (CuPcCl) and lysozyme, challenging the algorithm by high-index zone patterns and long crystallographic axes. Finally, we apply the procedure to a new, structurally uncharacterized five amino acid peptide.

摘要

由于与X射线相比,电子的德布罗意波长较短,其埃瓦尔德球的曲率较低,并且在倒易空间中单个电子衍射图案几乎是平的。因此,从一组随机取向的电子衍射图案中可靠地确定晶胞,这是连续电子衍射中的关键步骤,成为一项艰巨的任务。在这里,我们描述了一种从一组独立电子衍射图案中确定晶胞的算法,该算法在20世纪90年代初编写的PIEP(解释电子衍射图案程序)程序中实现。我们通过确定两种已知结构——高氯酸铜酞菁(CuPcCl)和溶菌酶的晶胞来评估该算法的性能,并通过高指数区图案和长晶轴对该算法进行挑战。最后,我们将该程序应用于一种新的、结构未知的五氨基酸肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9f6/11873814/2794c31e9574/a-81-00124-fig1.jpg

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