Yoshitaka Tateyama

National Institute for Materials Science 
"Yoshitaka Tateyama"
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Catalan FCI, Anh LT, Oh J, et al. (2021) Localized Graphitization on Diamond Surface as a Manifestation of Dopants. Advanced Materials (Deerfield Beach, Fla.). e2103250
Li S, Hong J, Gao B, et al. (2021) Tunable Doping of Rhenium and Vanadium into Transition Metal Dichalcogenides for Two-Dimensional Electronics. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 8: e2004438
Gao B, Jalem R, Tateyama Y. (2021) First-Principles Study of Microscopic Electrochemistry at the LiCoO Cathode/LiNbO Coating/β-LiPS Solid Electrolyte Interfaces in an All-Solid-State Battery. Acs Applied Materials & Interfaces
Kamiyama A, Kubota K, Igarashi D, et al. (2020) MgO-Template Synthesis of Extremely High Capacity Hard Carbon for Na-Ion Battery. Angewandte Chemie (International Ed. in English)
Tian HK, Jalem R, Gao B, et al. (2020) Electron and Ion Transfer across Interfaces of the NASICON-Type LATP Solid Electrolyte with Electrodes in All-Solid-State Batteries: A Density Functional Theory Study via an Explicit Interface Model. Acs Applied Materials & Interfaces
Miyazaki K, Takenaka N, Watanabe E, et al. (2020) First-Principles Study on the Cation-Dependent Electrochemical Stabilities in Li/Na/K-Hydrate-Melt Electrolytes. Acs Applied Materials & Interfaces
Tuerxun F, Yamamoto K, Hattori M, et al. (2020) Determining Factor on Polarization Behavior of Magnesium Deposition for Magnesium Battery Anode. Acs Applied Materials & Interfaces
Gao B, Jalem R, Tateyama Y. (2020) Surface-Dependent Stability of the Interface between Garnet LiLaZrO and the Li Metal in the All-Solid-State Battery from First-Principles Calculations. Acs Applied Materials & Interfaces
Baba T, Sodeyama K, Kawamura Y, et al. (2020) Li-ion transport at the interface between a graphite anode and LiCO solid electrolyte interphase: ab initio molecular dynamics study. Physical Chemistry Chemical Physics : Pccp
Assadi MHN, Okubo M, Yamada A, et al. (2020) Possible high-potential ilmenite type N a 1 M O 3 ( M = V – Ni ) cathodes realized by dominant oxygen redox reaction Physical Review Materials. 4: 15401
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