IP Library Granted Patent US 8,852,811
Granted Patent B2
US 8,852,811 · App. 13/063,812 · Granted Oct 7, 2014

Process for producing lithium manganate particles and non-aqueous electrolyte secondary battery

Inventors: Kazumichi Koga (Yamaguchi-ken, JP); Masayuki Uegami (Yamaguchi-ken, JP); Hiroaki Masukuni (Yamaguchi-ken, JP); Kazutoshi Matsumoto (Yamaguchi-ken, JP)
Assignee: Toda Kogyo Corporation
H01M10/052C04B2235/5463C04B35/62813C01G45/02C04B2235/3275H01M4/525H01M4/505C04B2235/5481C04B2235/81C04B35/62675C04B35/62886C04B2235/3203C04B2235/3409C04B35/62805C04B2235/3206C04B2235/3232C01P2004/51C01P2006/12C04B35/016C04B2235/3241C04B2235/5436H01M4/485C04B2235/442Y02E60/122C04B2235/3217H01M4/131C04B2235/3263C01P2004/61C01P2004/03C04B2235/3267C04B35/62802C04B2235/3272C01P2006/40C04B2235/3279C01G45/1235C04B2235/528
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Quick Facts
Patent No.
US 8,852,811
App. No.
13/063,812
Granted
Oct 7, 2014
Kind
B2
Abstract

According to the present invention, there is provided a process for producing lithium manganate particles having a high output and an excellent high-temperature stability. The present invention relates to a process for producing lithium manganate particles comprising the steps of mixing a lithium compound, a manganese compound and a boron compound with each other; and calcining the resulting mixture in a temperature range of 800 to 1050° C., wherein an average particle diameter (D 50 ) of the boron compound is not more than 15 times an average particle diameter (D 50 ) of the manganese compound, and wherein the lithium manganate particles have a composition represented by the following chemical formula: Li 1+x Mn 2-x-y Y1 y O 4 +B in which Y1 is at least one element selected from the group consisting of Ni, Co, Mg, Fe, Al, Cr and Ti, and x and y satisfy the conditions of 0.03≦x≦0.15 and 0≦y≦0.20, respectively.

Claims (9)

1. A process for producing lithium manganate particles comprising the steps in this order of:

mixing a lithium compound, a manganese compound and a boron compound with each other; and

calcining the resulting mixture in a temperature range of 800 to 1050° C.,

in which an average particle diameter (D 50 ) of the boron compound is not more than 15 times an average particle diameter (D 50 ) of the manganese compound.

2. A process for producing lithium manganate particles according to claim 1 , wherein the average particle diameter (D 50 ) of the boron compound is 1 μm to 100 μm.

3. A process for producing lithium manganate particles according to claim 1 , wherein the average particle diameter (D 50 ) of the manganese compound is 1 μm to 20 μm.

4. A process for producing lithium manganate particles according to claim 1 , wherein the lithium manganate particles as produced comprise secondary particles formed by aggregating or sintering primary particles of the lithium manganate particles having a particle diameter of not less than 1 μm, and have a composition represented by the following chemical formula:

Li 1+x Mn 2−x−y Y1 y O 4 +B

where Y1 is at least one element selected from the group consisting of Ni, Co, Mg, Fe, Al, Cr and Ti, and x and y satisfy the conditions of 0.03≦x≦0.15 and 0≦y≦0.20, respectively; and wherein the secondary particles of the lithium manganate particles have an average particle diameter (D 50 ) of 1 μm to 20 μm, and a breadth of particle size distribution (D 90 -D 10 ) of 2 μm to 30 μm.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jul 1, 2026
From: TODA KOGYO CORP.
To: BASF SE
Reel/Frame 075145/0116 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2011
From: KOGA, KAZUMICHI; UEGAMI, MASAYUKI; MASUKUNI, HIROAKI; MATSUMOTO, KAZUTOSHI
To: TODA KOGYO CORPORATION
Reel/Frame 026277/0596 →
Priority Claims (1)
JP 2008-239967 · Sep 18, 2008 · national
Continuity (1)
Related Publication 20110210287A1 · Sep 1, 2011