Publication Beamlines Strategic Pillar
King, Graham; Rakhmatullin, Aydar; Šimko, František (2025). The Role of Dynamic Polyhedral Rotations in the Phase Transitions of Rb3AlF6 and Cs3AlF6. Inorganic Chemistry 64(28) , 14661-14669. 10.1021/acs.inorgchem.5c02352. BXDS-WHE Materials
Kim, Subin; Horsley, Ezekiel; Ruff, Jacob P. C.; Moreno, Beatriz D.; Kim, Young-June et al. (2024). Structural transition and magnetic anisotropy in α−RuCl3. Physical Review B 109(14) . 10.1103/physrevb.109.l140101. BXDS-IVU Materials
Kaur, Simranjeet; D’Souza, Renita M.; Kelly, Timothy L.; Williams, Vance E.; Kaake, Loren G. et al. (2024). Electrostatic Correlations Lead to High Capacitance in Zwitterion-Containing Thin Films. ACS Applied Materials and Interfaces 16(29) , 38290-38299. 10.1021/acsami.4c01045. BXDS-WLE Materials
Kaur, Khushveer; King, Graham; Grosvenor, Andrew P. (2025). Examining Order–Disorder Structural Transition of Gd2Zr2–xCexO7 Using Synchrotron Techniques. Inorganic Chemistry . 10.1021/acs.inorgchem.4c04795. BXDS-WHE, HXMA Materials
Kaur, Khushveer; King, Graham; Grosvenor, Andrew P. (2025). Examining Order–Disorder Structural Transition of Gd2Zr2–xCexO7 Using Synchrotron Techniques. Inorganic Chemistry . 10.1021/acs.inorgchem.4c04795. BXDS-WHE, HXMA Materials
Kalantarian, S. Marzieh; Slovenský, Peter; Wang, Zhiqiang; Romanovski, Valentin; Romanovskaia, Elena et al. (2025). Effect of Nanoparticle Size on Cysteine‐Gold Surface Interactions. Particle and Particle Systems Characterization . 10.1002/ppsc.202400230. HXMA Materials
Ji, Haocheng; Wang, Junxiong; Qu, Haotian; Li, Junfeng; Ji, Wenhai et al. (2024). Closed‐Loop Direct Upcycling of Spent Ni‐Rich Layered Cathodes into High‐Voltage Cathode Materials. Advanced Materials . 10.1002/adma.202407029. SGM Materials
Jia, Shipeng; Abdolhosseini, Marzieh; Li, Yixuan; Lee, Sang-Jun; Ogasawara, Hirohito et al. (2025). Promoting Reversible Anionic Redox in Sodium-Ion Cathodes by Doping and Phase Control. ACS Materials Letters , 1370-1377. 10.1021/acsmaterialslett.4c02597. HXMA Materials
Jiang, Yi; Liang, Ruilin; Wang, Changshun; Liu, Yeze; Liu, Chuangwei et al. (2025). Discretizing Cobalt Spin–Orbitals through Tuning the Crystal Symmetry for Zinc–Air Batteries. Journal of the American Chemical Society . 10.1021/jacs.5c07623. BIOXAS-MAIN, BIOXAS-SIDE, BXDS-WHE, SGM, SXRMB, VESPERS Materials
Jiang, Yi; Liang, Ruilin; Wang, Changshun; Liu, Yeze; Liu, Chuangwei et al. (2025). Discretizing Cobalt Spin–Orbitals through Tuning the Crystal Symmetry for Zinc–Air Batteries. Journal of the American Chemical Society . 10.1021/jacs.5c07623. BIOXAS-MAIN, BIOXAS-SIDE, BXDS-WHE, SGM, SXRMB, VESPERS Materials
Jiang, Yi; Liang, Ruilin; Wang, Changshun; Liu, Yeze; Liu, Chuangwei et al. (2025). Discretizing Cobalt Spin–Orbitals through Tuning the Crystal Symmetry for Zinc–Air Batteries. Journal of the American Chemical Society . 10.1021/jacs.5c07623. BIOXAS-MAIN, BIOXAS-SIDE, BXDS-WHE, SGM, SXRMB, VESPERS Materials
Jiang, Yi; Liang, Ruilin; Wang, Changshun; Liu, Yeze; Liu, Chuangwei et al. (2025). Discretizing Cobalt Spin–Orbitals through Tuning the Crystal Symmetry for Zinc–Air Batteries. Journal of the American Chemical Society . 10.1021/jacs.5c07623. BIOXAS-MAIN, BIOXAS-SIDE, BXDS-WHE, SGM, SXRMB, VESPERS Materials
Jiang, Yi; Liang, Ruilin; Wang, Changshun; Liu, Yeze; Liu, Chuangwei et al. (2025). Discretizing Cobalt Spin–Orbitals through Tuning the Crystal Symmetry for Zinc–Air Batteries. Journal of the American Chemical Society . 10.1021/jacs.5c07623. BIOXAS-MAIN, BIOXAS-SIDE, BXDS-WHE, SGM, SXRMB, VESPERS Materials
Jiang, Yi; Liang, Ruilin; Wang, Changshun; Liu, Yeze; Liu, Chuangwei et al. (2025). Discretizing Cobalt Spin–Orbitals through Tuning the Crystal Symmetry for Zinc–Air Batteries. Journal of the American Chemical Society . 10.1021/jacs.5c07623. BIOXAS-MAIN, BIOXAS-SIDE, BXDS-WHE, SGM, SXRMB, VESPERS Materials
Jeskey, Jacob; Ding, Yong; Chen, Yidan; Hood, Zachary D.; Li, Hongliang et al. (2024). Carbon Nanospheres Loaded with Ir Single Atoms: Enhancing the Activity toward Formic Acid Oxidation by Increasing the Porosity. ChemCatChem . 10.1002/cctc.202400499. CLS-APS Materials