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金刚石对顶砧细胞晶体学中的选定技术:使用X射线透射对样品进行定心并摇晃粉末样品以提高X射线衍射图像质量。

Selected techniques in diamond anvil cell crystallography: centring samples using X-ray transmission and rocking powder samples to improve X-ray diffraction image quality.

作者信息

Smith Jesse S, Desgreniers Serge

机构信息

Laboratoire de physique des solides denses, University of Ottawa, Ottawa, Ontario, Canada K1N 6N5.

出版信息

J Synchrotron Radiat. 2009 Jan;16(Pt 1):83-96. doi: 10.1107/S0909049508030859. Epub 2008 Nov 14.

Abstract

The distinct X-ray transmission profile obtained by scanning a sample in a diamond anvil cell across a collimated X-ray beam is used to monitor sample displacement brought about by rotation. This measured displacement can in turn be used to calculate, and subsequently correct, the sample position with respect to a centre of rotation. This centring method differs from others also based on transmission in that it does not require a 180 degrees sample rotation, nor does it require prior positioning of the rotation axis in the path of the X-ray beam. After a full description of the method, an example is presented together with an extended record of use to evaluate the method in a practical setting. The practice and benefits of rocking polycrystalline samples during X-ray exposure have also been quantitatively examined. Changing the orientation of the sample grains with respect to the incident beam yields the expected result of a more homogeneous intensity distribution along Debye rings. Interestingly, by limiting the amount of time large grains assume a particular orientation, rocking brings about the added effect of significantly reducing detector saturation. Sample rocking yields more reliable relative intensities, a more appropriate line shape and narrower line width. Data are presented for a calibration standard at ambient pressure as well as a research sample at high pressure.

摘要

通过在金刚石对顶砧池中扫描样品穿过准直X射线束获得的独特X射线透射轮廓,用于监测由旋转引起的样品位移。该测量的位移进而可用于计算并随后校正样品相对于旋转中心的位置。这种定心方法与其他基于透射的方法不同,因为它不需要180度的样品旋转,也不需要事先将旋转轴定位在X射线束的路径中。在对该方法进行全面描述之后,给出了一个示例以及在实际环境中评估该方法的扩展使用记录。还对X射线曝光期间摇晃多晶样品的做法和益处进行了定量研究。改变样品晶粒相对于入射束的取向会产生沿德拜环强度分布更均匀的预期结果。有趣的是,通过限制大晶粒处于特定取向的时间量,摇晃会带来显著降低探测器饱和的附加效果。样品摇晃产生更可靠的相对强度、更合适的线形和更窄的线宽。给出了常压下校准标准样品以及高压下研究样品的数据。

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