IP Library Patent Application 15846515
Patent Application
App. No. 15/846,515

GRAPHITIC MATERIALS AND METHODS OF MAKING SAME

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Quick Facts
Patent No.
US None
App. No.
15/846,515
Abstract

A graphitic carbon material includes decorated graphitic spherical shells or fragments of decorated graphitic spherical shells, wherein the decorated graphitic spherical shells or fragments of decorated graphitic spherical shells have an average diameter of between 0.1 and 100 μm.

Claims (29)

1 . A graphitic carbon material comprising:

decorated graphitic spherical shells or fragments of decorated graphitic spherical shells, wherein the decorated graphitic spherical shells or fragments of decorated graphitic spherical shells have an average diameter of between 0.1 and 100 μm.

2 . The graphitic carbon material of claim 1 , wherein any decorated graphitic spherical shells or fragments of graphitic spherical shells, collectively, are present in the graphitic carbon material in an amount of between 40 and 100 vol. %, based on the total volume of the graphitic carbon material.

3 . A graphitic carbon material comprising:

tessellated regions, wherein the tessellated regions are present in the graphitic carbon material in an amount of between 5 and 100 vol. %, based on the total volume of the graphitic carbon material.

4 . The graphitic carbon material of claim 3 , wherein the graphitic carbon material is in the form of particles, and wherein the particles comprise tessellated regions and non-tessellated regions.

5 . The graphitic carbon material of claim 4 , wherein the tessellated regions are present in the particles in an amount of between 5 and 100 vol. %, based on the total volume of the particles.

6 . The graphitic carbon material according claim 4 , wherein the non-tessellated regions are present in the particles in an amount of between 1 and 95 vol. %, based on the total volume of the particles.

7 . The graphitic carbon material according to claim 4 , wherein the non-tessellated regions comprise amorphous carbon.

8 . The graphitic carbon material according to claim 4 , wherein the tessellated regions have an average diameter of between 10 and 200 μm.

9 . The graphitic carbon material according to claim 1 , wherein graphite is present in the graphitic carbon material in an amount of between 50 and 100%, based on total volume of the graphic carbon material.

10 . The graphitic carbon material according to claim 1 , wherein the graphitic carbon materials comprise either or both of the 2H graphite phase and the 3R graphite phase.

11 . The graphitic carbon material according to claim 1 , wherein the graphitic carbon materials have a BET surface area of between 30 and 500 m 2 /g.

12 . The graphitic carbon material according to claim 1 , wherein the graphitic carbon material contains less than 1 atomic % of Fe, Al, Si or Ca.

13 . The graphitic carbon material according to claim 1 , wherein the graphitic carbon material comprises graphite in an amount of greater than 85 atomic %, based on the total number of carbon atoms present in the graphitic carbon material, and the graphitic carbon material has density as measured by helium pycnometry of between 2.25 g/ml and 2.28 g/ml.

14 . The graphitic carbon material according to claim 1 , wherein the graphitic carbon material comprises carbon in an amount that is greater than 98 atomic %, based on the total number of atoms in the graphitic carbon material.

15 . An electrode comprising:

an electrode composition comprising the graphitic carbon material according to claim 1 ; and

a current collector.

16 . An electrochemical cell comprising:

the electrode of claim 15 .

17 . The electrochemical cell of claim 16 , wherein the electrochemical cell comprises a lithium ion electrochemical cell, and wherein the electrode comprises a negative electrode.

18 . The electrochemical cell of claim 17 , further comprising a positive electrode and an electrolyte.

19 . An electronic device comprising the electrochemical cell according to claim 1 .

20 . A method of making a graphitic carbon material, the method comprising:

combining a carbon source and magnesium to form a mixture;

triturating the mixture;

heating the mixture in an inert atmosphere; and

following the step of triturating the mixture or heating the mixture in an inert atmosphere, removing the non-carbon containing components from the mixture.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2020
From: 3M INNOVATIVE PROPERTIES COMPANY; 3M COMPANY
To: JOHNSON MATTHEY PUBLIC COMPANY LIMITED
Reel/Frame 051524/0275 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2017
From: OBROVAC, MARK N; ZHAO, LEYI; ZHAO, XIUYUN
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 044431/0830 →