IP Library Granted Patent US 8,450,014
Granted Patent B2
US 8,450,014 · App. 12/901,526 · Granted May 28, 2013

Lithium ion batteries with titania/graphene anodes

Inventors: Jun Liu (Richland, WA); Daiwon Choi (Richland, WA); Zhenguo Yang (Richland, WA); Donghai Wang (State College, PA); Gordon L Graff (West Richland, WA); Zimin Nie (Richland, WA); Vilayanur V Viswanathan (Richland, WA); Jason Zhang (Richland, WA); Wu Xu (Richland, WA); Jin Yong Kim (Richland, WA)
Assignee: Battelle Memorial Institute
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Quick Facts
Patent No.
US 8,450,014
App. No.
12/901,526
Granted
May 28, 2013
Kind
B2
Abstract

Lithium ion batteries having an anode comprising at least one graphene layer in electrical communication with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte. The graphene layer has a carbon to oxygen ratio of between 15 to 1 and 500 to 1 and a surface area of between 400 and 2630 m 2 /g. The nanocomposite material has a specific capacity at least twice that of a titania material without graphene material at a charge/discharge rate greater than about 10 C. The olivine structure of the cathode of the lithium ion battery of the present invention is LiMPO 4 where M is selected from the group consisting of Fe, Mn, Co, Ni and combinations thereof.

Claims (8)

1. A lithium ion battery having an anode comprising at least one graphene layer having a thickness of 0.5 to 50 nm in contact with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte, wherein the nanocomposite material has a specific capacity at least twice that of a titania material without graphene material at a charge/discharge rate greater than 20 C.

2. The lithium ion battery of claim 1 wherein the olivine structure is LiMPO4 and M is selected from the group consisting of Fe, Mn, Co, Ni and combinations thereof.

3. A lithium ion battery having an anode comprising at least one graphene layer having a thickness of 0.5 to 50 nm in contact with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte wherein the graphene and titania is sufficiently dispersed such that the specific capacity decays less than 5 percent over 300 cycles.

4. A lithium ion battery having an anode comprising at least one graphene layer having a thickness of 0.5 to 50 nm in contact with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte wherein the graphene and titania is sufficiently dispersed such that the specific capacity decays less than 2 percent over 300 cycles.

5. A lithium ion battery having an anode comprising at least one graphene layer having a thickness of 0.5 to 50 nm in contact with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte wherein the graphene and titania is sufficiently dispersed such that the specific capacity decays less than 1 percent over 300 cycles.

6. A lithium ion battery having an anode comprising at least one graphene layer having a thickness of 0.5 to 50 nm in contact with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte wherein the graphene and titania is sufficiently dispersed such that the specific capacity decays less than 1 percent over 700 cycles.

7. A lithium ion battery having an anode comprising at least one graphene layer having a thickness of 0.5 to 50 nm in contact with titania to form a nanocomposite material, a cathode comprising a lithium olivine structure, and an electrolyte wherein the graphene and titania is sufficiently dispersed such that the specific capacity decays less than 15 percent over 300 cycles wherein the nanocomposite material has a specific capacity at least twice that of a titania material without graphene material at a charge/discharge rate greater than 20 C about 10 C.

8. The lithium ion battery of claim 7 wherein the olivine structure is LiMPO4 and M is selected from the group consisting of Fe, Mn, Co, Ni and combinations thereof.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2011
From: LIU, JUN; CHOI, DAIWON; YANG, ZHENGUO; WANG, DONGHAI; GRAFF, GORDON L.; NIE, ZIMIN; VISWANATHAN, VILAYANUR V.; ZHANG, JASON; XU, WU; KIM, JIN YONG
To: BATTELLE MEMORIAL INSTITUTE
Reel/Frame 027273/0001 →
CONFIRMATORY LICENSE Recorded Apr 12, 2011
From: BATTELLE MEMORIAL INSTITUTE, PACIFIC NORTHWEST DIVISION
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 026108/0699 →
Continuity (3)
Continuation In Part 12460993 · Jul 27, 2009
Provisional Application 61084140 · Jul 28, 2008
Related Publication 20110111299A1 · May 12, 2011