First In Situ Observation of the LiCoO<sub>2</sub> Electrode/Electrolyte Interface by Total‐Reflection X‐ray Absorption SpectroscopyDaiko Takamatsu, Zempachi Ogumi, Yukinori Koyama et al.|Angewandte Chemie International Edition|2012Cited by 195
Effects of ZrO<sub>2</sub>Coating on LiCoO<sub>2</sub>Thin-Film Electrode Studied by In Situ X-ray Absorption SpectroscopyDaiko Takamatsu, Zempachi Ogumi, Shinichiro Mori et al.|Journal of The Electrochemical Society|2013Cited by 70
Improved Cyclic Performance of Lithium-Ion Batteries: An Investigation of Cathode/Electrolyte Interface via In Situ Total-Reflection Fluorescence X-ray Absorption SpectroscopyKentaro Yamamoto, Yoshiharu Uchimoto, Yukinori Koyama et al.|The Journal of Physical Chemistry C|2014Cited by 68
Origin of Surface Coating Effect for MgO on LiCoO<sub>2</sub> to Improve the Interfacial Reaction between Electrode and ElectrolyteYuki Orikasa, Yoshiharu Uchimoto, Daiko Takamatsu et al.|Advanced Materials Interfaces|2014Cited by 65
Effect of an Electrolyte Additive of Vinylene Carbonate on the Electronic Structure at the Surface of a Lithium Cobalt Oxide Electrode under Battery Operating ConditionsDaiko Takamatsu, Zempachi Ogumi, Yuki Orikasa et al.|The Journal of Physical Chemistry C|2015Cited by 61