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Chemical Communications (Cambridge, England)|June 28, 2018
Enabling multi-electron reaction of ε-VOPO<sub>4</sub> to reach theoretical capacity for lithium-ion batteriesCarrie Siu, Ieuan D Seymour, Sylvia Britto, et al.Nature Communications|November 2, 2019
Structural water and disordered structure promote aqueous sodium-ion energy storage in sodium-birnessiteXiaoqiang Shan, Fenghua Guo, Daniel S Charles, et al.Advanced Materials (Deerfield Beach, Fla.)|October 25, 2023
Diagnosing the Electrostatic Shielding Mechanism for Dendrite Suppression in Aqueous Zinc BatteriesYi Yuan, Shengda D Pu, Miguel A Pérez-Osorio, et al.Science Advances|February 22, 2020
Dissociate lattice oxygen redox reactions from capacity and voltage drops of battery electrodesJinpeng Wu, Zengqing Zhuo, Xiaohui Rong, et al.Inorganic Chemistry|April 12, 2016
What Happens to LiMnPO4 upon Chemical Delithiation?Yiqing Huang, Natasha A Chernova, Qiyue Yin, et al.Physical Review Letters|May 30, 2020
Simultaneous Structural and Electronic Transitions in Epitaxial VO_{2}/TiO_{2}(001)Galo J Paez, Christopher N Singh, Matthew J Wahila, et al.Small Science|May 14, 2026
How Surface Reconstruction Drives Heterogeneous Bulk Delithiation in Single-Crystalline Ni-Rich Layered Oxide CathodesGaurav C Pandey, Ashok S Menon, Valeria Calani San Miguel, 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.Scientific Reports|November 29, 2019
Surface Chemistry Dependence on Aluminum Doping in Ni-rich LiNi<sub>0.8</sub>Co<sub>0.2-y</sub>Al<sub>y</sub>O<sub>2</sub> CathodesZachary W Lebens-Higgins, David M Halat, Nicholas V Faenza, et al.ACS Omega|August 29, 2019
Electrochemical Performance of Nanosized Disordered LiVOPO<sub>4</sub>Yong Shi, Hui Zhou, Ieuan D Seymour, et al.Pageof 4