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Nature Communications|March 7, 2018
Elucidating anionic oxygen activity in lithium-rich layered oxidesJing Xu, Meiling Sun, Ruimin Qiao, et al.Advanced Materials (Deerfield Beach, Fla.)|May 6, 2025
Disordered Rocksalts as High-Energy and Earth-Abundant Li-Ion CathodesHan-Ming Hau, Tucker Holstun, Eunryeol Lee, et al.Nature Communications|December 11, 2023
Nonintrusive thermal-wave sensor for operando quantification of degradation in commercial batteriesYuqiang Zeng, Fengyu Shen, Buyi Zhang, et al.Nano Letters|July 20, 2019
Evolution of the Solid-Electrolyte Interphase on Carbonaceous Anodes Visualized by Atomic-Resolution Cryogenic Electron MicroscopyWilliam Huang, Peter M Attia, Hansen Wang, et al.Nature|April 13, 2018
Reversible Mn2+/Mn4+ double redox in lithium-excess cathode materialsJinhyuk Lee, Daniil A Kitchaev, Deok-Hwang Kwon, et al.The Journal of Physical Chemistry Letters|February 27, 2020
How Bulk Sensitive is Hard X-ray Photoelectron Spectroscopy: Accounting for the Cathode-Electrolyte Interface when Addressing Oxygen RedoxZachary W Lebens-Higgins, Hyeseung Chung, Mateusz J Zuba, et al.Nature Materials|October 13, 2020
Cation-disordered rocksalt-type high-entropy cathodes for Li-ion batteriesZhengyan Lun, Bin Ouyang, Deok-Hwang Kwon, et al.Science (New York, N.Y.)|May 17, 2014
Recyclable, strong thermosets and organogels via paraformaldehyde condensation with diaminesJeannette M García, Gavin O Jones, Kumar Virwani, et al.Small (Weinheim an Der Bergstrasse, Germany)|March 24, 2025
Designing Advanced Electrolytes for High-Voltage High-Capacity Disordered Rocksalt CathodesRidwan A Ahmed, Rohith Srinivaas Mohanakrishnan, Jingyang Wang, et al.Nature Nanotechnology|September 19, 2024
Earth-abundant Li-ion cathode materials with nanoengineered microstructuresHan-Ming Hau, Tara Mishra, Colin Ophus, et al.Pageof 7