Invention Grant
- Patent Title: Positive electrode for non-aqueous electrolyte secondary battery and non-aqueous electrolyte secondary battery using the same
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Application No.: US14776010Application Date: 2014-03-13
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Publication No.: US09608261B2Publication Date: 2017-03-28
- Inventor: Kenji Ohara , Yoshiaki Nitta , Satoru Ichikawa , Gentaro Kano , Manabu Nishijima , Osamu Shimamura , Fumihiro Kawamura , Kousuke Hagiyama , Shigeo Ibuka , Manabu Kaseda , Masanori Suenaga , Tamaki Hirai , Masahiro Takaya , Kuniharu Nomoto
- Applicant: NISSAN MOTOR CO., LTD.
- Applicant Address: JP Yokohama-shi
- Assignee: NISSAN MOTOR CO., LTD.
- Current Assignee: NISSAN MOTOR CO., LTD.
- Current Assignee Address: JP Yokohama-shi
- Agency: Foley & Lardner LLP
- Priority: JP2013-054106 20130315
- International Application: PCT/JP2014/056798 WO 20140313
- International Announcement: WO2014/142283 WO 20140918
- Main IPC: H01M2/02
- IPC: H01M2/02 ; H01M4/36 ; H01M4/505 ; H01M4/525 ; H01M10/0525 ; H01M4/131 ; H01M10/0585 ; H01M2/16 ; H01M4/02

Abstract:
[Object] Provided is a means for improving cycle characteristics by suppressing electrode deterioration resulting from non-uniformity of voltage across an electrode plane in a high-capacity and large-area non-aqueous electrolyte secondary battery that includes lithium nickel-based composite oxide as a positive electrode active substance.[Solving Means] Disclosed is a positive electrode for a non-aqueous electrolyte secondary battery used in a non-aqueous electrolyte secondary battery in which the ratio value of battery area (projected area of the battery including the battery outer casing body) to rated capacity is 5 cm2/Ah or more and the rated capacity is 3 Ah or more, the positive electrode comprising a positive electrode current collector and a positive electrode active substance layer that is formed on a surface of the positive electrode current collector and has a positive electrode active substance containing a lithium nickel-based composite oxide and a spinel type lithium manganese composite oxide, in which, when the average secondary particle diameter (D50) of the lithium nickel-based composite oxide is D50(A) [μm], the content ratio of the lithium nickel-based composite oxide in the positive electrode active substance layer is A [% by mass], the average secondary particle diameter (D50) of the spinel type lithium manganese composite oxide is D50(B) [μm], and the content ratio of the spinel type lithium manganese composite oxide in the positive electrode active substance layer is B [% by mass], the positive electrode satisfies the following Mathematical Formula 1 and Mathematical Formula 2: [Math. 1] 0.5≦D50(A)/D50(B)≦2.0 MathematicalFormula1: B/(A+B)≧0.2 MathematicalFormula2:
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