IP Library › Granted Patent US 9,478,365
Granted Patent B2
US 9,478,365 · App. 14/270,291 · Granted Oct 25, 2016

Carbon nanosheets

Inventors: David Mitlin (Sherwood Park, CA); Huanlei Wang (Edmonton, CA); Zhanwei Xu (Edmonton, CA); Zhi Li (Edmonton, CA); Chris Holt (Edmonton, CA)
Assignee: THE GOVERNORS OF THE UNIVERSITY OF ALBERTA
H01G11/36C01B31/02C01B31/08H01G11/44C01P2004/20C01P2006/12C01P2006/40H01G11/34Y02E60/13
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Quick Facts
Patent No.
US 9,478,365
App. No.
14/270,291
Granted
Oct 25, 2016
Kind
B2
Abstract

There is disclosed a combined hydrothermal and activation process that uses hemp bast fiber as the precursor to achieve graphene-like carbon nanosheets, a carbon nanosheet comprising carbonized crystalline cellulose, a carbon nanosheet formed by carbonizing crystalline cellulose, a capacitative structure comprises interconnected carbon nanosheets of carbonized crystalline cellulose, a method of forming a nanosheet comprising carbonizing crystalline cellulose to create carbonized crystalline cellulose. The interconnected two-dimensional carbon nanosheets also contain very high levels of mesoporosity.

Claims (15)

1. A graphene-like carbon nanosheet comprising carbonized crystalline cellulose, macroporous voids of 1-2 μm in diameter, and mesopores of 2-5 nm in diameter, wherein the carbonized crystalline cellulose comprises carbonized exfoliated crystalline cellulose hemp fibrils.

2. The graphene-like carbon nanosheet of claim 1 , wherein the carbonized crystalline cellulose comprises activated carbonized crystalline cellulose fibrils.

3. The graphene-like carbon nanosheet of claim 1 , wherein the activated carbonized crystalline cellulose comprises activated hydrothermal carbonized crystalline cellulose.

4. The graphene-like carbon nanosheet of claim 1 , wherein the graphene-like carbon nanosheet is between 10 and 30 nanometers thick.

5. The carbon nanosheet of claim 1 , wherein the graphene-like carbon nanosheet is at least partly graphitized, and wherein the carbon nanosheet is interconnected.

6. A graphene-like carbon nanosheet formed by carbonizing crystalline cellulose, wherein the graphene-like carbon nanosheet comprises macroporous voids of 1-2 μm in diameter and mesopores of 2-5 nm in diameter, wherein the crystalline cellulose comprises exfoliated crystalline cellulose hemp fibrils.

7. The graphene-like carbon nanosheet of claim 6 , wherein the carbonizing comprises a hydrothermal treatment.

8. The graphene-like carbon nanosheet of claim 6 , wherein the carbonizing comprises activating.

9. The graphene-like carbon nanosheet of claim 8 , wherein the activating comprises alkali activating.

10. The graphene-like carbon nanosheet of claim 6 , wherein the graphene-like carbon nanosheet is between 10 and 30 nanometers thick.

11. The graphene-like carbon nanosheet of claim 6 , wherein the graphene-like carbon nanosheet is at least partly graphitized.

12. A capacitative structure comprising interconnected graphene-like carbon nanosheets of carbonized crystalline cellulose, wherein the graphene-like carbon nanosheets comprise macroporous voids of 1-2 μm in diameter, and mesopores of 2-5 nm in diameter, wherein the carbonized crystalline cellulose comprises exfoliated carbonized crystalline cellulose hemp fibrils.

13. The capacitative structure of claim 12 , wherein the carbonized crystalline cellulose comprises activated hydrothermal carbonized crystalline cellulose.

14. The capacitative structure of claim 12 , wherein the graphene-like carbon nanosheet is between 10 and 30 nanometers thick.

15. The capacitative structure of claim 12 , wherein the graphene-like carbon nanosheet is at least partly graphitized.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2014
From: MITLIN, DAVID; WANG, HUANLEI; XU, ZHANEWEI; LI, ZHI; HOLT, CHRIS
To: THE GOVERNORS OF THE UNIVERSITY OF ALBERTA
Reel/Frame 032950/0045 →
Continuity (2)
Provisional Application 61819393 · May 3, 2013
Related Publication 20140328006A1 · Nov 6, 2014