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首页> 外文期刊>Journal of Applied Crystallography >High-throughput continuous rotation electron diffraction data acquisition via software automation
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High-throughput continuous rotation electron diffraction data acquisition via software automation

机译:高吞吐量连续旋转电子衍射数据采集通过软件自动化

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Single-crystal electron diffraction (SCED) is emerging as an effective technique to determine and refine the structures of unknown nano-sized crystals. In this work, the implementation of the continuous rotation electron diffraction (cRED) method for high-throughput data collection is described. This is achieved through dedicated software that controls the transmission electron microscope and the camera. Crystal tracking can be performed by defocusing every nth diffraction pattern while the crystal rotates, which addresses the problem of the crystal moving out of view of the selected area aperture during rotation. This has greatly increased the number of successful experiments with larger rotation ranges and turned cRED data collection into a high-throughput method. The experimental parameters are logged, and input files for data processing software are written automatically. This reduces the risk of human error, and makes data collection more reproducible and accessible for novice and irregular users. In addition, it is demonstrated how data from the recently developed serial electron diffraction technique can be used to supplement the cRED data collection by automatic screening for suitable crystals using a deep convolutional neural network that can identify promising crystals through the corresponding diffraction data. The screening routine and cRED data collection are demonstrated using a sample of the zeolite mordenite, and the quality of the cRED data is assessed on the basis of the refined crystal structure.
机译:单晶电子衍射(SCED)作为一种有效的技术,以确定和优化未知纳米晶体的结构。在这项工作中,描述了用于高吞吐量数据收集的连续旋转电子衍射(RECT)方法的实施。这是通过控制透射电子显微镜和相机的专用软件来实现的。晶体跟踪可以通过在晶体旋转时散焦每个第n个衍射图案来执行,这解决了在旋转期间在所选择的区域孔的视野下移动的晶体的问题。这大大增加了较大旋转范围的成功实验的数量,并将信用数据收集转化为高通量方法。记录实验参数,并自动编写数据处理软件的输入文件。这降低了人为错误的风险,并使数据收集更加可重复,可用于新手和不规则的用户。另外,证明了来自最近开发的串联电子衍射技术的数据如何通过使用深度卷积神经网络自动筛选来补充通过可以通过相应的衍射数据识别有希望的晶体的合适晶体来补充信用数据收集。使用沸石丝硝的样品对筛选例程和信用数据收集进行说明,并且基于精制晶体结构评估信用数据的质量。

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