金刚石顶砧
校准
分布函数
散射
分辨率(逻辑)
航程(航空)
光学
探测器
高压
压力测量
对分布函数
功能(生物学)
材料科学
无定形固体
光子
化学
物理
衍射
结晶学
热力学
计算机科学
量子力学
复合材料
人工智能
进化生物学
生物
作者
Karena W. Chapman,Peter J. Chupas,G.J. Halder,Joseph A. Hriljac,C. Kurtz,Benjamin K. Greve,Chad J. Ruschman,Angus P. Wilkinson
标识
DOI:10.1107/s0021889810002050
摘要
Pair distribution function (PDF) methods have great potential for the study of diverse high-pressure phenomena. However, the measurement of high-quality, high-resolution X-ray PDF data (to Q max > 20 Å −1 ) remains a technical challenge. An optimized approach to measuring high-pressure total scattering data for samples contained within a diamond anvil cell (DAC) is presented here. This method takes into account the coupled influences of instrument parameters (photon energy, detector type and positioning, beam size/shape, focusing), pressure-cell parameters (target pressure range, DAC type, diamonds, pressure-transmitting media, backing plates, pressure calibration) and data reduction on the resulting PDF. The efficacy of our approach is demonstrated by the high-quality, high-pressure PDFs obtained for representative materials spanning strongly and weakly scattering systems, and crystalline and amorphous samples. These are the highest-resolution high-pressure PDFs reported to date and include those for α-alumina (to Q max = 20 Å −1 ), BaTiO 3 (to Q max = 30 Å −1 ) and pressure-amorphized zeolite (to Q max = 20 Å −1 ).
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