IP Library Granted Patent US 8,562,836
Granted Patent B2
US 8,562,836 · App. 12/957,064 · Granted Oct 22, 2013

Graft copolymers, methods for grafting hydrophilic chains onto hydrophobic polymers, and articles thereof

Inventors: Anne M. Mayes (Mustang, OK); Jonathan F. Hester (Hudson, WI); Pallab Banerjee (Roslindale, MA); Ariya Akthakul (Boston, MA)
Assignee: Massachusetts Institute of Technology
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Quick Facts
Patent No.
US 8,562,836
App. No.
12/957,064
Granted
Oct 22, 2013
Kind
B2
Abstract

The present invention relates to synthetic methods for grafting hydrophilic chains onto polymers, particularly hydrophobic polymers such as poly(vinyl chloride) (PVC), poly(vinylidene fluoride) (PVDF), and chlorinated polypropylene (cPP). Resulting polymers include comb polymers which can have a microphase-separated structure of hydrophilic domains provided by the hydrophilic chains. Articles prepared from these comb polymers, particularly derived from PVDF, include membranes for water filtration in which the hydrophilic domains provide a pathway for water transport. PVC can be plasticized by grafting the PVC with hydrophilic chains. In addition, such articles, particularly articles having biomedical applications, can display anti-thrombogenic properties.

Claims (18)

1. A method for liquid filtration, comprising:

passing a liquid through a membrane comprising a microphase-separated polymer including microphase domains having a mean diameter of less than about 3 nm, the domains providing transport pathways for the liquid, wherein the microphase domains are hydrophilic and provide at least 50% of the transport pathways for water and wherein the microphase domains are provided by side chains bonded to a backbone of the polymer; and

recovering therefrom a filtered liquid,

wherein each of the side chains comprises poly(ethylene oxide).

2. A method for liquid filtration, comprising:

passing a liquid through a membrane comprising a microphase-separated polymer including microphase domains having a mean diameter of less than about 3 nm, the domains providing transport pathways for the liquid, wherein the microphase domains are hydrophilic and provide at least 50% of the transport pathways for water and wherein the microphase domains are provided by side chains bonded to a backbone of the polymer; and

recovering therefrom a filtered liquid,

wherein each of the side chains is selected from the group consisting of polyoxyethylene methacrylate, poly(ethylene glycol) methacrylate, poly(ethylene glycol) methyl ether methacrylate, poly(hydroxyethyl methacrylate), poly(hydroxyethylacrylate), hydrolyzed poly(t-butyl methacrylate), hydrolyzed poly(t-butyl acrylate), polyacrylamide, poly(N-vinyl pyrrolidone), poly(aminostyrene), poly(methyl sulfonyl ethyl methacrylate), and copolymers comprising combinations of their monomers.

3. The method of claim 1 , wherein the microphase domains provide at least 90% of the transport pathways for water.

4. A method for liquid filtration, comprising:

passing a liquid through a membrane comprising a microphase-separated polymer including microphase domains having a mean diameter of less than about 3 nm, the domains providing transport pathways for the liquid, wherein the microphase domains are hydrophilic and provide at least 50% of the transport pathways for water; and

recovering therefrom a filtered liquid,

wherein the microphase-separated polymer is selected from the group consisting of poly(vinyl chloride)-g-polyoxyethylene methacrylate, poly(vinylidene fluoride)-g-polyoxyethylene methacrylate and chlorinated polypropylene-g-polyoxyethylene methacrylate.

5. A method for liquid filtration, comprising:

passing a liquid through a membrane comprising a microphase-separated polymer including microphase domains having a mean diameter of less than about 3 nm, the domains providing transport pathways for the liquid, wherein the microphase domains are hydrophilic and provide at least 50% of the transport pathways for water; and

recovering therefrom a filtered liquid,

wherein the membrane comprises a blend of the microphase-separated polymer and at least one other polymer, and

wherein the at least one other polymer is selected from the group consisting of poly(vinylidene fluoride), polyethylene, poly(vinyl fluoride), poly(tetrafluoroethylene), poly(1,2 difluoroethylene), poly(chlorotrifluoroethylene), polypropylene, halogenated polyethylene, halogenated polypropylene, polysulfone, poly(ether sulfone), poly(aryl sulfone), polyacrylonitrile, and copolymers comprising combinations of their monomers.

Assignments (2)
CONFIRMATORY LICENSE Recorded Aug 8, 2011
From: MIT
To: NAVY, SECRETARY OF THE UNITED STATES OF AMERICA
Reel/Frame 026740/0761 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2011
From: MAYES, ANNE M.; HESTER, JONATHAN F.; BANERJEE, PALLAB; AKTHAKUL, ARIYA
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 025785/0500 →
Continuity (4)
Continuation 11541629 · Sep 29, 2006
Continuation 09951125 · Sep 12, 2001
Provisional Application 60231599 · Sep 11, 2000
Related Publication 20110168630A1 · Jul 14, 2011