IP Library Granted Patent US 10,700,347
Granted Patent B2
US 10,700,347 · App. 15/891,442 · Granted Jun 30, 2020

Lithium-ion battery anodes and lithium-ion batteries using the same

Inventors: Kun-Lei Zhu (Beijing, CN); Kai Liu (Beijing, CN); Jia-Ping Wang (Beijing, CN); Kai-Li Jiang (Beijing, CN); Shou-Shan Fan (Beijing, CN)
Assignees: Tsinghua University; HON HAI PRECISION INDUSTRY CO., LTD.
H01M4/366H01M4/131H01M4/483H01M4/587H01M4/625H01M10/0525H01M2004/027H01M2004/028
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Quick Facts
Patent No.
US 10,700,347
App. No.
15/891,442
Granted
Jun 30, 2020
Kind
B2
Abstract

The present disclosure relates to a lithium-ion battery anode comprising a flexible and free-standing carbon nanotube film, and a plurality of titanium dioxide nanoparticles uniformly adsorbed on a surface of each of the plurality of carbon nanotubes. The flexible and free-standing carbon nanotube film comprises a plurality of carbon nanotubes. A particle size of each of the plurality of titanium dioxide nanoparticles is less than or equal to 30 nanometers. The present disclosure also relates to a lithium-ion battery comprising the lithium-ion battery anode.

Claims (21)

1. A lithium-ion battery anode consisting of:

a flexible and free-standing carbon nanotube film comprising a plurality of carbon nanotubes, wherein a length of each of the plurality of carbon nanotube is longer than 300 micrometers, and the flexible and free-standing carbon nanotube film is a three-dimensional network-like structure; and

a plurality of titanium dioxide nanoparticles uniformly adsorbed on a surface of each of the plurality of carbon nanotubes through Ti—C noncovalent bonds, and discontinuously dispersed on the surface of each of the plurality of carbon nanotubes,

wherein a particle size of each of the plurality of titanium dioxide nanoparticles is less than or equal to 30 nanometers, a mass percentage of the titanium dioxide nanoparticles in the lithium-ion battery anode is in a range from about 20% to about 60%, and a mass density of the titanium dioxide nanoparticles is in a range from 1 mg/cm 2 to 3 mg/cm 2 .

2. The lithium-ion battery anode of claim 1 , wherein the particle size of each of the plurality of titanium dioxide nanoparticles is in a range from about 3 nanometers to about 20 nanometers.

3. The lithium-ion battery anode of claim 1 , wherein the plurality of carbon nanotubes are pure carbon nanotubes free of impurities.

4. The lithium-ion battery anode of claim 1 , wherein a spacing between adjacent titanium dioxide nanoparticles of the plurality of titanium dioxide nanoparticles is in a range from about 3 nanometers to about 20 nanometers.

5. A lithium-ion battery comprising:

a lithium-ion battery anode comprising:

a flexible and free-standing carbon nanotube film comprising a first plurality of carbon nanotubes, surfaces of the first plurality of carbon nanotubes not being modified, wherein a length of each of the first plurality of carbon nanotube is longer than 300 micrometers, and the flexible and free-standing carbon nanotube film is a three-dimensional network-like structure; and

a plurality of titanium dioxide nanoparticles uniformly adsorbed on a surface of each of the first plurality of carbon nanotubes through Ti—C noncovalent bonds, and discontinuously dispersed on the surface of each of the plurality of carbon nanotubes, wherein a particle size of each of the plurality of titanium dioxide nanoparticles is less than or equal to 30 nanometers, a mass percentage of the titanium dioxide nanoparticles in the lithium-ion battery anode is in a range from about 20% to about 60%, and a mass density of the titanium dioxide nanoparticles is in a range from 1 mg/cm 2 to 3 mg/cm 2 ;

a lithium-ion battery cathode;

a separator located between the lithium-ion battery cathode and the lithium-ion battery anode, and

an external encapsulating shell configured to encapsulate the lithium-ion battery cathode, the lithium-ion battery anode, and the separator; and

an electrolyte solution filled in the external encapsulating shell.

6. The lithium-ion battery of claim 5 , wherein the lithium-ion battery cathode is a flexible and free-standing composite film comprising a plurality of cathode active material particles and a second plurality of carbon nanotubes.

7. The lithium-ion battery of claim 6 , wherein the plurality of cathode active material particles are wrapped by the second plurality of carbon nanotubes or attached on the surface of the second plurality of carbon nanotubes.

8. The lithium-ion battery of claim 6 , wherein a particle size of each of the plurality of cathode active material particles is in a range from about 5 micrometers to about 20 micrometers.

9. The lithium-ion battery of claim 6 , wherein a mass percentage of the plurality of cathode active material particles in the flexible and free-standing composite film is in a range from about 90 wt % to about 99.9 wt %.

10. The lithium-ion battery of claim 5 , wherein the particle size of each of the plurality of titanium dioxide nanoparticles is in a range from about 3 nanometers to about 20 nanometers.

11. The lithium-ion battery of claim 5 , wherein the lithium-ion battery anode is free of binders, conductive additives and current collectors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2018
From: ZHU, KUN-LEI; LIU, KAI; WANG, JIA-PING; JIANG, KAI-LI; FAN, SHOU-SHAN
To: TSINGHUA UNIVERSITY; HON HAI PRECISION INDUSTRY CO., LTD.
Reel/Frame 044864/0595 →
Priority Claims (1)
CN 2017 1 0271843 · Apr 24, 2017 · national
Continuity (1)
Related Publication 20180309117A1 · Oct 25, 2018
Cited By (1)
US 12,347,864