TY - JOUR
T1 - A Li-free inverted-stack all-solid-state thin film battery using crystalline cathode material
AU - Yamamoto, Takayuki
AU - Iwasaki, Hiroki
AU - Suzuki, Yasuhiro
AU - Sakakura, Miyuki
AU - Fujii, Yasuhisa
AU - Motoyama, Munekazu
AU - Iriyama, Yasutoshi
N1 - Publisher Copyright:
© 2019 The Authors
PY - 2019/8
Y1 - 2019/8
N2 - Lithium metal is a potential anode material to develop all-solid-state battery (SSB) with high energy density. However, Li metal easily reacts with atmospheric component (H2O, CO2, O2, N2) and then Li metal must be treated sensitively for industrial applications. Here, we report an inverted-stack Li-free thin-film SSB, SUS/Pt/LiPON/LiCoO2/Au, where highly-crystalline LiCoO2 thin film is formed on amorphous LiPON thin film at room temperature by aerosol deposition and Li metal is electrochemically grown between SUS/Pt and LiPON. The resultant Li-free thin-film SSB operates at 4 V and repeats stable charge-discharge reactions for over 100 cycles at 25 °C.
AB - Lithium metal is a potential anode material to develop all-solid-state battery (SSB) with high energy density. However, Li metal easily reacts with atmospheric component (H2O, CO2, O2, N2) and then Li metal must be treated sensitively for industrial applications. Here, we report an inverted-stack Li-free thin-film SSB, SUS/Pt/LiPON/LiCoO2/Au, where highly-crystalline LiCoO2 thin film is formed on amorphous LiPON thin film at room temperature by aerosol deposition and Li metal is electrochemically grown between SUS/Pt and LiPON. The resultant Li-free thin-film SSB operates at 4 V and repeats stable charge-discharge reactions for over 100 cycles at 25 °C.
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U2 - 10.1016/j.elecom.2019.106494
DO - 10.1016/j.elecom.2019.106494
M3 - Article
AN - SCOPUS:85069476674
SN - 1388-2481
VL - 105
JO - Electrochemistry Communications
JF - Electrochemistry Communications
M1 - 106494
ER -