BL03HB: a Laue microdiffraction beamline for both protein crystallography and materials science at SSRF

IF 3.6 1区 物理与天体物理 Q1 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Science and Techniques Pub Date : 2024-07-11 DOI:10.1007/s41365-024-01475-5
Zhi-Jun Wang, Si-Sheng Wang, Zheng-Huang Su, Li Yu, Yu-Zhu Wang, Bo Sun, Wen Wen, Xing-Yu Gao
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Abstract

A Laue microdiffraction beamline (BL03HB) was constructed at the Shanghai Synchrotron Radiation Facility (SSRF). This beamline features two consecutive focusing points in two different sectors within its end station, the first dedicated to protein crystallography and the other tailored to materials science applications. Based on a superbend dipole magnet with a magnetic field of 2.29 T, a two-stage focusing design was implemented with two sets of Kirkpatrick-Baez mirrors to achieve a micro white beam as small as 4.2 \({\upmu }\)m \(\times\)4.3 \({\upmu }\)m at the first sector and 0.9 \({\upmu }\)m \(\times\)1.3 \({\upmu }\)m at the second sector in the standard beamline operation mode at SSRF. The X-ray microbeam in the two sectors can be easily switched between monochromatic and white beams by moving a four-bounce monochromator in or out of the light path, respectively. In the protein crystallography sector, white-beam Laue microdiffraction was demonstrated to successfully determine the structure of protein crystals from only a few images of diffraction data collected by a Pilatus 2 M area detector. In the materials science sector, the white-beam Laue diffraction was collected in a reflection geometry using another Pilatus 2 M area detector, which could map the microstructural distribution on the sample surface by scanning the samples. In general, the BL03HB beamline promotes the application of Laue microdiffraction in both protein crystallography and materials science. This paper presents a comprehensive overview of the BL03HB beamline, end station, and the first commission results.

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BL03HB:SSRF 用于蛋白质晶体学和材料科学的 Laue 微衍射光束线
上海同步辐射装置(SSRF)建造了一条 Laue 微衍射光束线(BL03HB)。该光束线在其终端站内的两个不同区域设有两个连续的聚焦点,第一个聚焦点专门用于蛋白质晶体学研究,另一个聚焦点专门用于材料科学应用。以磁场为2.29 T的超端偶极子磁铁为基础,通过两套Kirkpatrick-Baez反射镜实现了两级聚焦设计,使微白光束小至4.在SSRF的标准光束线操作模式下,第一扇区的X射线微光束为2 ({\upmu })m (\times\)4.3 ({\upmu })m,第二扇区的X射线微光束为0.9 ({\upmu })m (\times\)1.3 ({\upmu })m。这两个扇区的 X 射线微光束可通过将一个四跳单色器分别移入或移出光路,在单色光束和白光光束之间轻松切换。在蛋白质晶体学领域,白光束 Laue 微衍射被证明可以成功地从皮拉图斯 2 M 面积探测器收集到的衍射数据的几个图像中确定蛋白质晶体的结构。在材料科学领域,使用另一个皮拉图斯 2 M 面积探测器以反射几何方式收集了白光束 Laue 衍射数据,通过扫描样品可以绘制样品表面的微观结构分布图。总之,BL03HB 光束线促进了 Laue 微衍射在蛋白质晶体学和材料科学中的应用。本文全面介绍了 BL03HB 光束线、终端站和首次调试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nuclear Science and Techniques
Nuclear Science and Techniques 物理-核科学技术
CiteScore
5.10
自引率
39.30%
发文量
141
审稿时长
5 months
期刊介绍: Nuclear Science and Techniques (NST) reports scientific findings, technical advances and important results in the fields of nuclear science and techniques. The aim of this periodical is to stimulate cross-fertilization of knowledge among scientists and engineers working in the fields of nuclear research. Scope covers the following subjects: • Synchrotron radiation applications, beamline technology; • Accelerator, ray technology and applications; • Nuclear chemistry, radiochemistry, radiopharmaceuticals, nuclear medicine; • Nuclear electronics and instrumentation; • Nuclear physics and interdisciplinary research; • Nuclear energy science and engineering.
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