IP Library Granted Patent US 9,136,533
Granted Patent B2
US 9,136,533 · App. 12/159,701 · Granted Sep 15, 2015

Lithium nickel manganese cobalt composite oxide and lithium rechargeable battery

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Quick Facts
Patent No.
US 9,136,533
App. No.
12/159,701
Granted
Sep 15, 2015
Kind
B2
Abstract

This invention provides a lithium nickel manganese cobalt composite oxide having a composition of LiaNixMnyCozO 2 (x+y+z=1, 1.05<a<1.3), wherein, in the data obtained by measuring a Raman spectrum of the composite oxide, the peak intensity of an Eg oscillation mode of a hexagonal crystal structure located at 480 to 495 cm −1 and the peak intensity of an F2g oscillation mode of a spinel structure located at 500 to 530 cm −1 in relation to the peak intensity of an A1g oscillation mode having a hexagonal crystal structure in which the main peak is located at 590 to 610 cm −1 are respectively 15% or higher and 40% or lower than the peak intensity of the A1g oscillation mode of a hexagonal crystal structure as the main peak. Thereby, the Raman spectrum can be used for the identification of the crystal structure to clarify the characteristics of a positive electrode precursor composed of lithium nickel manganese cobalt composite oxide. In particular, it is possible to obtain lithium nickel manganese cobalt composite oxide and a lithium rechargeable battery superior in rate characteristics and cycle characteristics.

Claims (13)

1. Lithium nickel manganese cobalt composite oxide having a composition of Li a Ni x Mn y Co z O 2 (x+y+z=1, 1.05<a<1.3), wherein, in the data obtained by measuring a Raman spectrum of the composite oxide, the peak intensity of an Eg oscillation mode of a hexagonal crystal structure located at 480 to 495 cm −1 and the peak intensity of an F2g oscillation mode of a spinel structure located at 500 to 530 cm −1 in relation to the peak intensity of an A1g oscillation mode of a hexagonal crystal structure in which the main peak is located at 590 to 610 cm −1 are both respectively 15% or higher and 40% or lower than the peak intensity of the A1g oscillation mode of a hexagonal crystal structure as the main peak.

2. A lithium rechargeable battery which uses the lithium nickel manganese cobalt composite oxide according to claim 1 as a cathode active material.

3. A lithium nickel manganese cobalt composite oxide, consisting of:

a composition of Li a Ni x Mn y Co z O 2 (x+y+z=1, 1.05<a<1.3) having a layered crystal structure with coexisting phases, said co-existing phases being identifiable in data obtained by measuring a Raman spectrum of the composite oxide as follows:

a peak intensity of a hexagonal crystal structure of an A1g oscillation mode located at 590 to 610 cm −1 being a main peak;

a peak intensity of an Eg oscillation mode of a hexagonal crystal structure located at 480 to 495 cm −1 being 15% to 40% of said peak intensity of said main peak of said hexagonal crystal structure of said A1g oscillation mode; and

a peak intensity of an F2g oscillation mode of a spinel structure located at 500 to 530 cm −1 being 15% to 40% of said peak intensity of said main peak of said hexagonal crystal structure of said A1g oscillation mode.

4. A lithium nickel manganese cobalt composite oxide, consisting of:

a composition of Li a Ni x Mn y Co z O 2 (x+y+z=1, 1.05<a<1.3) having a layered crystal structure with coexisting phases, said co-existing phases being identifiable in data obtained by measuring a Raman spectrum of the composite oxide as follows:

a peak intensity of a hexagonal crystal structure of an A1g oscillation mode located at 590 to 610 cm −1 being a main peak,

a peak intensity of an Eg oscillation mode of a hexagonal crystal structure located at 480 to 495 cm −1 being 20% to 30% of said peak intensity of said main peak of said hexagonal crystal structure of said A1g oscillation mode, and

a peak intensity of an F2g oscillation mode of a spinel structure located at 500 to 530 cm −1 being 20% to 30% of said peak intensity of said main peak of said hexagonal crystal structure of said A1g oscillation mode.

5. A lithium rechargeable battery which includes said lithium nickel manganese cobalt composite oxide according to claim 4 as a cathode active material.

Assignments (5)
CHANGE OF ADDRESS Recorded Aug 11, 2021
From: JX NIPPON MINING & METALS CORPORATION
To: JX NIPPON MINING & METALS CORPORATION
Reel/Frame 057160/0114 →
CHANGE OF ADDRESS Recorded Feb 7, 2017
From: JX NIPPON MINING & METALS CORPORATION
To: JX NIPPON MINING & METALS CORPORATION
Reel/Frame 041649/0733 →
CHANGE OF NAME Recorded Oct 12, 2010
From: NIPPON MINING HOLDINGS, INC.
To: JX NIPPON MINING & METALS CORPORATION
Reel/Frame 025123/0358 →
MERGER Recorded Oct 8, 2010
From: NIPPON MINING & METALS CO., LTD.
To: NIPPON MINING HOLDINGS, INC.
Reel/Frame 025115/0062 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2008
From: NAGASE, RYUICHI; KAJIYA, YOSHIO; TASAKI, HIROSHI
To: NIPPON MINING & METALS CO., LTD.
Reel/Frame 021181/0851 →