IP Library Granted Patent US 12,233,383
Granted Patent B2
US 12,233,383 · App. 18/411,289 · Granted Feb 25, 2025

Fabrication of filtration membranes

Inventors: Prity Bengani-Lutz (Woburn, MA); Ayse Asatekin Alexiou (Arlington, MA)
Assignee: Trustees of Tufts College
B01D71/80B01D67/0011B01D67/0016B01D67/0083B01D69/02B01D69/107B01D69/12B01D71/32B01D71/4011C08F220/24B01D2325/0283B01D2325/18B01D2325/20C08F220/387
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Quick Facts
Patent No.
US 12,233,383
App. No.
18/411,289
Granted
Feb 25, 2025
Kind
B2
Abstract

Disclosed is a method of preparing a filtration membrane. The method includes providing a copolymer solution by dissolving a statistical copolymer in a mixture of a co-solvent and a first organic solvent, coating the copolymer solution onto a porous support layer to form a polymeric layer thereon, coagulating the polymeric layer on top of the support layer to form a thin film composite membrane, and immersing the thin film composite membrane into a water bath to obtain a filtration membrane. Also disclosed are a filtration membrane prepared by the method, and a process of filtering a liquid using the filtration membrane thus prepared.

Claims (24)

1. A filtration membrane comprising:

a porous support layer; and

a polymeric layer coated onto the porous support layer, wherein the polymeric layer is formed by coating a copolymer solution formed by dissolving a statistical copolymer in a mixture of a co-solvent and an organic solvent on the porous support layer, wherein the polymer layer is coagulated on top of the porous support layer to form a thin film composite membrane and, wherein the co-solvent is ethyl ammonium nitrate and the organic solvent differs from the co-solvent,

wherein the copolymer solution comprises the statistical copolymer at 1 to 99 w/v %, the co-solvent at 5 to 49 v/v %, and the organic solvent at 51 to 95 v/v %; the statistical copolymer comprises zwitterionic repeat units and hydrophobic repeat units,

wherein the zwitterionic repeat units constitute 30-50% by weight of the statistical copolymer, the hydrophobic repeat units constitute 50-70% by weight of the statistical copolymer; and the statistical copolymer is selected from the group consisting of poly((trifluoroethyl methacrylate)-r-(sulfobetaine methacrylate)), poly((methyl methacrylate)-r (sulfobetaine methacrylate)), poly((trifluoroethyl methacrylate)-r-(3-(2-vinylpyridinium-1-yl) propane-1-sulfonate)), poly((trifluoroethyl methacrylate)-r-(phosphorylcholine methacrylate), or poly((trifluoroethyl methacrylate)-r-(3-(2-vinylpyridinium-1-yl) butane-1-sulfonate)); and the co-solvent is miscible with both water and the organic solvent, and

wherein the membrane has an effective pore size of 0.5 to 5 nm and a water permeance of 10 Lm −2 h −1 bar −1 or higher.

2. A process of filtering a liquid, the process comprising:

providing a filtration membrane of claim 1 that has a support layer and a polymeric selective layer;

directing a liquid through the filtration membrane, first through the polymeric selective layer and then through the support layer; and

collecting the liquid that permeates through the filtration membrane.

3. The filtration membrane of claim 1 , wherein the copolymer solution comprises the co-solvent at 20 v/v %.

4. The filtration membrane of claim 1 , wherein the membrane comprises the copolymer at 10 w/v %.

5. The filtration membrane of claim 1 , wherein the copolymer solution comprises

the co-solvent at 20 v/v %; and the membrane comprises the copolymer at 10 w/v %.

6. The filtration membrane of claim 1 , wherein the organic solvent is trifluoroethanol.

7. The filtration membrane of claim 1 , wherein the organic solvent is selected from the group consisting of trifluoroethanol, dimethyl sulfoxide, formamide, dimethyl formamide, hexafluoro isopropanol, N-methyl-2-pyrrolidone, pyridine, dioxane, toluene, chloroform, benzene, carbon tetrachloride, chlorobenzene, 1,1,2-trichloroethane, dichloromethane, ethylene dichloride, xylene, tetrahydrofuran, methanol, and ethanol.

8. The filtration membrane of claim 1 , wherein the porous support layer has an effective pore size larger than that of the polymeric layer and is formed of polyethersulfone, polyphenylenesulfone, polyphenylene sulfidesulfone, polyacrylonitrile, cellulose ester, polyphenyleneoxide, polypropylene, polyvinylidene fluoride, polyvinylchloride, polyarylsulfone, polyphenylene sulfone, polyetheretherketone, polysulfone, polyamide, polyimide, or a combination thereof.

9. The filtration membrane of claim 8 , wherein the porous support layer is a flat sheet membrane or a hollow fiber membrane.

10. A filtration membrane comprising:

a porous support layer; and

a polymeric layer coated onto the porous support layer, wherein the polymeric layer is formed by coating a copolymer solution formed by dissolving a statistical copolymer in a mixture of a co-solvent and an organic solvent on the porous support layer, wherein the polymer layer is coagulated on top of the porous support layer to form a thin film composite membrane and, wherein the organic solvent differs from the co-solvent,

wherein the copolymer solution comprises the statistical copolymer at 1 to 99 w/v %, the co-solvent at 5 to 49 v/v %, and the organic solvent at 51 to 95 v/v %; and

the statistical copolymer comprises zwitterionic repeat units and hydrophobic repeat units,

wherein the zwitterionic repeat units constitute 30-50% by weight of the statistical copolymer, the hydrophobic repeat units constitute 50-70% by weight of the statistical copolymer, the statistical copolymer is poly ((trifluoroethyl methacrylate)-r-(sulfobetaine methacrylate)), and the organic solvent is ethanol.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2024
From: BENGANI-LUTZ, PRITY; ASATEKIN ALEXIOU, AYSE
To: TRUSTEES OF TUFTS COLLEGE
Reel/Frame 069121/0510 →
Continuity (3)
Division 16346590
Provisional Application 62416340 · Nov 2, 2016
Related Publication 20240149225A1 · May 9, 2024
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