IP Library › Granted Patent US 10,847,804
Granted Patent B2
US 10,847,804 · App. 16/064,852 · Granted Nov 24, 2020

Carbon nanosphere modified current collector for lithium metal battery and method for preparing the same

Inventors: Yuguo Guo (Beijing, CN); Huan Ye (Beijing, CN); Yaxia Yin (Beijing, CN)
Assignee: INSTITUTE OF CHEMISTRY, CHINESE ACADEMY OF SCIENCES
H01M4/663H01M4/0404H01M4/0428H01M4/80H01M10/052H01M10/0525B82Y40/00
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Quick Facts
Patent No.
US 10,847,804
App. No.
16/064,852
Granted
Nov 24, 2020
Kind
B2
Abstract

The present invention related to a method for preparing carbon nanospheres modified current collector and its application in metal secondary battery. The said method includes the preparation of carbon nanospheres modified current collector by chemical vapor deposition process and the process for loading metal into the modified current collector as an anode. Comparing with the bare Ni, the said anode with modified current collector demonstrates enhanced stripping/plating efficiency, well confinement of Li dendrite, stable long lifespan and strengthen safety.

Claims (19)

1. A carbon nanospheres-modified current collector for lithium metal-based batteries, comprising:

a porous current collector serving as a substrate, and

carbon nanospheres loaded on the porous current collector,

wherein the carbon nanospheres have a layered structure assembled from a plurality of curled graphite sheets, and

wherein the carbon nanospheres have an average diameter of 500-2000 nm, and

wherein the porous current collector is a Ni foam, a Cu foam, or an Al foam,

wherein the carbon nanospheres-modified current collector is made according to a process that comprises the following steps:

washing and drying the porous current collector;

annealing the dried porous current collector at 800-1000° C. for 10-120 min in a reducing atmosphere;

placing the annealed porous current collector in a reactor to carry out chemical vapor deposition in the presence of a gas mixture containing a hydrocarbon and a carrier gas for 2-30 minutes at 800-1000° C. to obtain the carbon nanospheres-modified current collector,

wherein a volume ratio between the hydrocarbon and the carrier gas is in the range of (300-400): (25-50);

maintaining the modified porous current collector in a flow of the carrier gas; and

removing the carbon nanospheres-modified current collector from the reactor at room temperature.

2. The modified current collector according to claim 1 , wherein the average diameter of the carbon nanospheres is of 800-1500 nm.

3. The carbon nanospheres-modified current collector according to claim 1 , wherein an amount of carbon nanospheres on the porous current collector is about 1-10 mg/cm 2 .

4. An anode for a metal secondary battery comprising a carbon nanospheres-modified current collector according to claim 1 and Li, Na, Mg or combination thereof loaded on the said carbon nanospheres-modified current collector.

5. A metal secondary battery comprising an anode according to claim 4 , said metal secondary battery is a lithium battery or a sodium battery.

6. A storage device comprising an anode according to claim 4 .

7. A metal secondary battery comprising an anode, a cathode, and an electrolyte, wherein said anode comprises the carbon nanospheres-modified current collector according to claim 1 , and wherein a content of Li in the anode is 1-20% more than a content of Li in the cathode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2018
From: GUO, YUGUO; YE, HUAN; YIN, YAXIA
To: INSTITUTE OF CHEMISTRY, CHINESE ACADEMY OF SCIENCES
Reel/Frame 046406/0846 →
Priority Claims (1)
CN 2016 1 0035653 · Jan 19, 2016 · national
Continuity (1)
Related Publication 20190020037A1 · Jan 17, 2019