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Journal of Power Sources | 1995

Relationship between carbonaceous materials and electrolyte in secondary lithium-ion batteries

Akira Ohta; Hizuru Koshina; Hiromi Okuno; Hiroyuki Murai

We have examined the initial charge characteristics of the following prototype battery: (i) positive electrode: LiCoO2; (ii) negative electrode: meso-carbon micro-beads (MCMB) with heat treatment at 2800 °C; (iii) electrolyte: mixture of ethylene carbonate (EC) and other solvent(s), and mixture of EC+diethyl carbonate (DEC) and other solvents dissolved with LiPF6, and (iv) battery: cylinder-type battery, in which positive and negative electrodes are spirally wound. We found that electrolytes which contain methyl acetate (MA), methyl propionate (MP) and ethyl propionate (EP) showed good performances. In general, when the distance between carbon layers d(002) value became smaller, the charge/discharge capacity became higher when the carbon electrode was charged to 0 V versus metallic Li electrode. We prepared a cylinder-prototype battery by using 1.5 M LiPF6/EC+DEC+MP as electrolyte and examined its stability at conditions of regular use and found, when it was charged and stored at high temperature, the ester-exchange reaction product of the electrolyte occurred and methane gas at the negative electrode and gas mainly carbon monooxide (CO) and carbon dioxide (CO2) at the positive electrode were formed. In the case of an electrolyte with mixed solvents, it was assumed that the ester-exchange reaction and gas-evolution reaction by oxidation/reduction may have taken place.


Archive | 1992

Non-Aqueous electrolyte secondary batteries

Masaya Okochi; Masaki Kitagawa; Takashi Takeuchi; Kaoru Inoue; Hizuru Koshina


Archive | 1993

Non-aqueous secondary electrochemical battery

Hiromi Okuno; Hizuru Koshina; Akiyoshi Morita


Archive | 1999

Non-aqueous electrolyte secondary battery comprising composite particles

Kazuya Iwamoto; Hizuru Koshina; Harunari Shimamura; Yoshiaki Nitta


Archive | 2003

Anode active material, manufacturing method thereof, and non-aqueous electrolyte secondary battery

Tsutomu Ohzuku; Hiroshi Yoshizawa; Masatoshi Nagayama; Hizuru Koshina


Archive | 1998

Nonaqueous electrolyte secondary battery comprising carbon particles with a plural-layer structure

Masaki Kitagawa; Hizuru Koshina; Toyoji Sugimoto; Shoji Yamaguchi; Manabu Hayashi


Archive | 2004

Negative electrode for non-aqueous electrolyte secondary battery, production method thereof and non-aqueous electrolyte secondary battery

Hizuru Koshina; Shinji Nakanishi


Archive | 2005

Active material, manufacturing method thereof, and non-aqueous electrolyte secondary battery including the active material

Hiroshi Yoshizawa; Shinji Nakanishi; Hizuru Koshina


Archive | 1995

Method of manufacturing a non-aqueous electrolyte secondary cell

Yoshiyuki Ozaki; Hizuru Koshina


Archive | 1999

Non-aqueous electrolyte secondary cell and its charging method

Kaoru Inoue; Hiroshi Yoshizawa; Hizuru Koshina; Harunari Shimamura; Yoshiaki Nitta

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