Kuramochi Masahiro, Omata Hiroki, Ishihara Masaki, Hanslin Sander Ø, Mizumaki Masaichiro, Kawamura Naomi, Osawa Hitoshi, Suzuki Motohiro, Mio Kazuhiro, Sekiguchi Hiroshi, Sasaki Yuji C
Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, 277-8561, Japan.
AIST-UTokyo Advanced Operando-Measurement Technology Open Innovation Laboratory (OPERANDO-OIL), National Institute of Advanced Industrial Science and Technology (AIST), Kashiwa, 277-0882, Japan.
Sci Rep. 2021 Mar 5;11(1):4097. doi: 10.1038/s41598-021-83320-y.
The dynamic properties of crystalline materials are important for understanding their local environment or individual single-grain motions. A new time-resolved observation method is required for use in many fields of investigation. Here, we developed in situ diffracted X-ray blinking to monitor high-resolution diffraction patterns from single-crystal grains with a 50 ms time resolution. The diffraction spots of single grains of silver halides and silver moved in the θ and χ directions during the photolysis chemical reaction. The movements of the spots represent tilting and rotational motions. The time trajectory of the diffraction intensity reflecting those motions was analysed by using single-pixel autocorrelation function (sp-ACF). Single-pixel ACF analysis revealed significant differences in the distributions of the ACF decay constants between silver halides, suggesting that the motions of single grains are different between them. The rotational diffusion coefficients for silver halides were estimated to be accurate at the level of approximately 0.1 to 0.3 pm/s. Furthermore, newly formed silver grains on silver halides correlated with their ACF decay constants. Our high-resolution atomic scale measurement-sp-ACF analysis of diffraction patterns of individual grains-is useful for evaluating physical properties that are broadly applicable in physics, chemistry, and materials science.
晶体材料的动态特性对于理解其局部环境或单个晶粒的运动非常重要。在许多研究领域都需要一种新的时间分辨观测方法。在此,我们开发了原位衍射X射线闪烁技术,以50毫秒的时间分辨率监测单晶粒的高分辨率衍射图案。卤化银和银单晶粒的衍射斑点在光解化学反应过程中在θ和χ方向上移动。斑点的移动代表倾斜和旋转运动。通过使用单像素自相关函数(sp-ACF)分析反映这些运动的衍射强度的时间轨迹。单像素ACF分析揭示了卤化银之间ACF衰减常数分布的显著差异,表明它们之间单晶粒的运动不同。卤化银的旋转扩散系数估计在约0.1至0.3皮米/秒的水平上是准确的。此外,卤化银上新形成的银晶粒与其ACF衰减常数相关。我们对单个晶粒衍射图案的高分辨率原子尺度测量——sp-ACF分析,对于评估广泛应用于物理、化学和材料科学的物理性质很有用。