Electrochemical performance of a newly-designed all-solid-state Li ion battery with a LiNi1/3Co1/3Mn1/3O2-LiVO3 mono-particle layered cathode and a lamellar LiVO3 anode

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Abstract

All-solid-state Li ion battery (ASS-LIB) with a LiNi1/3Co1/3Mn1/3O2-LiVO3 mono-particle layered (NCMLVO-MPL) cathode was newly developed by blade coating method with a mixture of NCM and deliquescent-LiVO3 (LVO). The electrode was fabricated by coating the aqueous slurry containing the LiNi1/3Co1/3Mn1/3O2 (NCM) particles and the liquefied LVO on the Al foil and drying it at low temperature below 150C. By controlling the gap of blade coater, we successfully fabricated "mono-particle layered structure, where NCM particles are highly dispersed in the LVO matrix and the thickness was almost same as the diameter of the particles. The ASS-LIB with the NCMLVO-MPL cathode exhibited high discharge retention of 84% after 50 cycles. In the MPL structure, the well-dispersed NCM mono-particles functioned as the ion and electron conductive path in the direction perpendicular to the electrode, which kept chargedischarge capacity during the cycle test. Moreover, the all-solid-state Li ion battery incorporated with the NCMLVO-MPL composite cathode and a lamellar LVO anode was designed, also exhibiting high discharge retention of 92% after 50 cycles.

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Onodera, T., Kawaji, J., Sato, A., & Okumura, T. (2017). Electrochemical performance of a newly-designed all-solid-state Li ion battery with a LiNi1/3Co1/3Mn1/3O2-LiVO3 mono-particle layered cathode and a lamellar LiVO3 anode. In Journal of the Ceramic Society of Japan (Vol. 125, pp. 494–499). Ceramic Society of Japan. https://doi.org/10.2109/jcersj2.16316

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