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Characterization of electrode/electrolyte interface for lithium batteries using in situ synchrotron X-ray reflectometry—A new experimental technique for LiCoO2 model electrode
Authors:Masaaki Hirayama  Noriyuki Sonoyama  Takeshi Abe  Machiko Minoura  Masumi Ito  Daisuke Mori  Atsuo Yamada  Ryoji Kanno  Takahito Terashima  Mikio Takano  Kazuhisa Tamura  Jun’ichiro Mizuki
Affiliation:1. Department of Electronic Chemistry, Interdisciplinary Graduate School of Science and Engineering, Tokyo Institute of Technology, 4259 Nagatuta, Midori-ku, Yokohama 226-8502, Japan;2. Institute of Chemical Research, Kyoto University, Uji, Kyoto-fu 611-0011, Japan;3. Japan Atomic Energy Agency, Synchrotron Radiation Research Center, Kansai Research Establishment, 1-1-1 Kouto Sayo-cho Sayo-gun, Hyogo 679-5148, Japan
Abstract:A new experimental technique was developed for detecting structure changes at electrode/electrolyte interface of lithium cell using X-ray reflectometry and two-dimensional model electrodes with a restricted lattice-plane. The electrodes were constructed with an epitaxial film of LiCoO2 synthesized by pulsed laser deposition method. The orientation of the epitaxial film depends on the substrate plane; the 2D layer of LiCoO2 is parallel to the SrTiO3 (1 1 1) substrate ((003)LiCoO2//(111)SrTiO3)((003)LiCoO2//(111)SrTiO3), while the 2D layer is perpendicular to the SrTiO3 (1 1 0) substrate ((110)LiCoO2//(110)SrTiO3)((110)LiCoO2//(110)SrTiO3). The anisotropic properties were confirmed by electrochemical measurements. Ex situ X-ray reflectivity measurements indicated that the impurity layer existed on the as-grown LiCoO2 was dissolved and a new SEI layer with lower density was formed after soaking into the electrolyte. In situ X-ray reflectivity measurements indicated that the surface roughness of the intercalation (1 1 0) plane increased with applying voltages, while no significant changes in surface morphology were observed for the intercalation non-active (0 0 3) plane during the pristine stage of the charge–discharge process.
Keywords:Epitaxial thin-film  Lithium battery  Electrode/electrolyte interface  Reflectivity
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