IP Library Granted Patent US 11,492,262
Granted Patent B2
US 11,492,262 · App. 17/524,614 · Granted Nov 8, 2022

Silicon carbon composites comprising ultra low Z

Inventors: Abirami Dhanabalan (Bothell, WA); Avery J. Sakshaug (Everett, WA); Henry R. Costantino (Woodinville, WA)
Assignee: Group14Technologies, Inc.
C01B32/963C04B35/565C04B38/0054C01P2006/12C01P2006/14C01P2006/40C04B2235/614
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Quick Facts
Patent No.
US 11,492,262
App. No.
17/524,614
Granted
Nov 8, 2022
Kind
B2
Abstract

Silicon-carbon composite materials and related processes are disclosed that overcome the challenges for providing amorphous nano-sized silicon entrained within porous carbon. Compared to other, inferior materials and processes described in the prior art, the materials and processes disclosed herein find superior utility in various applications, including energy storage devices such as lithium ion batteries.

Claims (25)

1. A silicon-carbon composite comprising:

a. a carbon scaffold comprising a pore volume, wherein the pore volume comprises greater than 80% microporosity;

b. a silicon content of 30% to 60% by weight;

c. a Z of less than 5, wherein Z=1.875×[(M1100−M800)/M1100]×100%, wherein M1100 is a mass of the silicon-carbon composite at 1100° C. and M800 is a mass of the silicon-carbon composite at 800° C. when the silicon-carbon composite is heated under air from about 25° C. to about 1100° C., as determined by thermogravimetric analysis; and

d. a surface area less than 30 m 2 /g.

2. The silicon-carbon composite of claim 1 , wherein the pore volume comprises greater than 90% microporosity.

3. The silicon-carbon composite of claim 2 , wherein the pore volume comprises greater than 95% microporosity.

4. The silicon-carbon composite of claim 3 , comprising a surface area less than 10 m 2 /g.

5. The silicon-carbon composite of claim 3 , comprising a surface area less than 5 m 2 /g.

6. The silicon-carbon composite of claim 5 , comprising a silicon content of 40% to 60% by weight.

7. The silicon-carbon composite of claim 2 , comprising a surface area less than 10 m 2 /g.

8. The silicon-carbon composite of claim 2 , comprising a surface area less than 5 m 2 /g.

9. The silicon-carbon composite of claim 2 , comprising a silicon content of 40% to 60% by weight.

10. The silicon-carbon composite of claim 1 , comprising a surface area less than 10 m 2 /g.

11. The silicon-carbon composite of claim 10 , comprising a silicon content of 40% to 60% by weight.

12. The silicon-carbon composite of claim 1 , comprising a surface area less than 5 m 2 /g.

13. The silicon-carbon composite of claim 1 , comprising a silicon content of 40% to 60% by weight.

14. The silicon-carbon composite of claim 1 , wherein the Z is less than 4.

15. The silicon-carbon composite of claim 1 , wherein the Z is less than 3.

16. The silicon carbon composite of claim 1 , wherein the silicon-carbon composite comprises a Dv50 ranging from 5 nm to 20 microns.

17. The silicon carbon composite of claim 1 , wherein the silicon-carbon composite comprises a capacity of greater than 900 mA/g.

18. The silicon-carbon composite of claim 1 , further comprising lithium ions.

19. An electrode comprising the silicon-carbon composite of claim 1 .

20. An energy storage device comprising the silicon-carbon composite of claim 1 .

21. The energy storage device of claim 20 , wherein the energy storage device is a Li ion battery.

Assignments (1)
SECURITY INTEREST Recorded Jul 1, 2026
From: GROUP14 TECHNOLOGIES, INC.
To: NOMURA STRATEGIC VENTURES FUND 1, LP
Reel/Frame 075876/0771 →
Continuity (2)
Continuation 16996694 · Aug 18, 2020
Related Publication 20220064008A1 · Mar 3, 2022
Cited By (4)
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