IP Library Granted Patent US 10,239,302
Granted Patent B2
US 10,239,302 · App. 15/905,219 · Granted Mar 26, 2019

Layer-by-layer assembly of graphene oxide membranes via electrostatic interaction and eludication of water and solute transport mechanisms

Inventors: Baoxia Mi (Moraga, CA); Meng Hu (Baltimore, MD)
Assignee: University of Maryland, College Park
B32B37/14B01D69/10B01D69/12B01D71/021C01B32/198C01B32/23B01D61/002B01D61/025B01D65/08B01D67/0006B01D69/148B01D71/60B01D71/68B01D2323/30B01D2325/14B32B2038/0076B32B2310/025Y10T156/10
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Quick Facts
Patent No.
US 10,239,302
App. No.
15/905,219
Granted
Mar 26, 2019
Kind
B2
Abstract

A method for synthesizing a water purification membrane is presented. The method includes stacking a plurality of graphene oxide (GO) nanosheets to create the water purification membrane, the stacking involving layer-by-layer assembly of the plurality of GO nanosheets and forming a plurality of nanochannels between the plurality of GO nanosheets for allowing the flow of a fluid and for rejecting the flow of contaminants. The method further includes cross-linking the plurality of GO nanosheets by 1,3,5-benzenetricarbonyl trichloride on a polydopamine coated polysulfone support.

Claims (21)

1. A method for creating a water separation membrane, the method comprising:

depositing a plurality of graphene oxide (GO) nanosheets via a layer-by-layer assembly;

bonding the plurality of GO nanosheets with each other and with a support substrate; and

cross-linking the plurality of GO nanosheets by 1,3,5-benzenetricarbonyl trichloride on the support substrate.

2. The method of claim 1 , further comprising covalently bonding the plurality of GO nanosheets via cross-linkers.

3. The method of claim 1 , wherein the cross-linkers are monomers and polymers.

4. The method of claim 1 , further comprising electrostatically bonding the plurality of GO nanosheets.

5. The method of claim 4 , wherein a structure, a charge, and a functionality of the plurality of GO nanosheets is tuned by using polyelectrolytes.

6. The method of claim 1 , wherein the support substrate is a polydopamine coated polysulfone support substrate.

7. The method of claim 1 , wherein the plurality of GO nanosheets are negatively charged.

8. The method of claim 1 , further comprising forming a plurality of nanochannels between the plurality of GO nanosheets for allowing the flow of a fluid and for rejecting the flow of contaminants.

9. A method for creating a water separation membrane, the method comprising:

depositing a plurality of graphene oxide (GO) nanosheets via a layer-by-layer assembly;

electrostatically bonding the plurality of GO nanosheets with each other and with a support substrate; and

tuning a structure, a charge and functionality of the plurality of GO nanosheets by using electrolytes.

10. The method of claim 9 , wherein the support substrate is a polydopamine coated polysulfone support substrate.

11. The method of claim 9 , further comprising covalently bonding the plurality of GO nanosheets via cross-linkers.

12. The method of claim 11 , wherein the cross-linkers are monomers and polymers.

13. The method of claim 9 , further comprising cross-linking the plurality of GO nanosheets by 1,3,5-benzenetricarbonyl trichloride on the support substrate.

14. The method of claim 9 , wherein the plurality of GO nanosheets are negatively charged.

15. The method of claim 9 , further comprising forming a plurality of nanochannels between the plurality of GO nanosheets for allowing the flow of a fluid and for rejecting the flow of contaminants.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2019
From: MI, BAOXIA; HU, MENG
To: UNIVERSITY OF MARYLAND, COLLEGE PARK
Reel/Frame 048200/0296 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2018
From: LIN, DONGHANG; BARRON-KRAUS, KYLE; SHAH, SIDDARTH RAJENDRA
To: SERVICENOW, INC.
Reel/Frame 045292/0283 →
Continuity (3)
Division 14658990 · Mar 16, 2015
Provisional Application 61953418 · Mar 14, 2014
Related Publication 20180186142A1 · Jul 5, 2018