TY - JOUR A1 - Shabalin, A. G. A1 - Zhang, M. A1 - Yao, W. A1 - Rysov, R. A1 - Ren, Z. A1 - Lapkin, D. A1 - Kim, Y.-Y. A1 - Assalauova, D. A1 - Mukharamova, N. A1 - Sprung, M. A1 - Vartanyants, I. A. A1 - Meng, Y. S. A1 - Shpyrko, O. G. T1 - Mapping the 3D position of battery cathode particles in Bragg coherent diffractive imaging Y1 - 2023-02-16 VL - 30 IS - 2 SP - 445 EP - 448 JF - Journal of Synchrotron Radiation DO - 10.1107/S1600577523000814 PB - International Union of Crystallography N2 - In Bragg coherent diffractive imaging, the precise location of the measured crystals in the interior of the sample is usually missing. Obtaining this information would help the study of the spatially dependent behavior of particles in the bulk of inhomogeneous samples, such as extra‐thick battery cathodes. This work presents an approach to determine the 3D position of particles by precisely aligning them at the instrument axis of rotation. In the test experiment reported here, with a 60 µm‐thick LiNi0.5Mn1.5O4 battery cathode, the particles were located with a precision of 20 µm in the out‐of‐plane direction, and the in‐plane coordinates were determined with a precision of 1 µm. N2 - A method to determine the 3D position of particles in Bragg coherent diffractive imaging experiments is proposed. Test measurements demonstrate depth‐resolution with a precision of 20 µm along the beam. image UR - http://resolver.sub.uni-goettingen.de/purl?gldocs-11858/11289 ER -