IL99671A

Articles having a hydrophilic polymeric shell and method for preparing same

Abstract

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IL99671A, drawing sheet 1
Sheet 1 of 7

Term

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12 claims: 3 independent, 9 dependent

  1. 1
    Docket Number 44643ISR5A What is claimed is:1. An article having a hydrophilic, polymeric shell, comprising: a supporting structure having a complex geometric configuration and surfaces about said structure and an extremely thin, self-interlocking, tactic, hydrophilic poly(vinyl alcohol) shell enveloping said surfaces while substantially retaining said complex geometric configuration.
  2. 2
    The article according to Claim 1, wherein said supporting structure comprises polymeric, ceramic, cellulosic, glassy, metallic, or carbonaceous material;and wherein said supporting structure is a film, a membrane, a bead, a nonwoven web, a woven web, a spun thread, a porous fiber, or a porous hollow fiber.
  3. 3
    The article according to Claim 1, wherein said supporting structure comprises a polymeric composition.
  4. 4
    The article according to Claim 3, wherein said polymeric composition comprises a polyolefin, a polyhalo-olefin, a polysulfone, a polyethersulfone, a poly dialkenyl phenylene oxide, a polyamide, a polyimide, a polyetherimide, a nylon, or combinations thereof.
  5. 5
    The article according to Claim 3, wherein said supporting structure is a porous membrane. . The article according to Claim 5, wherein said porous membrane has a porosity of from about 15 percent to about 99 percent, said porosity being substantially retained with said poly(vinyl alcohol) shell enveloping said surfaces;and wherein said porous membrane has pores in a range of sizes from about 0.01 μη to about 20 μη. I. The article according to Claim 1, wherein said poly(vinyl alcohol) shell comprises from about an average of 10 to about an average of 4000 monolayers of poly(vinyl alcohol) enveloping said surfaces;wherein said poly(vinyl alcohol) shell is substantially insoluble in solvents having a solubility parameter differential to the solubility parameter of poly(vinyl alcohol) of greater than about 0.4;wherein said poly(vinyl alcohol) shell has a sufficient pore wetting surface energy to permit nearly instantly wetting of said article with water;wherein said tactic, hydrophilic poly(vinyl alcohol) shell has hydroxyl reactive sites available for further reaction.
  6. 6
    8. The article according to Claim 1, wherein said tactic, hydrophilic poly(vinyl alcohol) shell is formed in situ at said surfaces by a hydrolysis reaction of a hydrolysis reagent with a hydrophobic, polymeric poly(vinyl alcohol) precursor previously applied to said surfaces;wherein said poly(vinyl alcohol) shell comprises from about an average of 10 to about an average of 4000 monolayers of poly(vinyl alcohol) on said surfaces;and wherein said precursor comprises a tactic homopolymer of vinyl trifluoroacetate, a tactic copolymer of vinyl trifluoroacetate monomer and a comonomer having a vinylic group therein, a tactic homopolymer of vinyl tert-butyl ether, or a tactic copolymer of vinyl tert-butyl ether monomer and a monomer having a vinylic group therein.
  7. 7
    9. The article according to Claim 8, wherein said poly(vinyl alcohol) shell is the in situ reaction product of tactic polyvinyl trifluoroacetate and ammonia vapor, and wherein said poly(vinyl alcohol) comprises of from about an average of 10 to about an average of 4000 monolayers of tactic poly(vinyl alcohol) about said surfaces of said supporting structure;wherein said article is a porous membrane having a porosity of from about 15 percent to about 99 percent and at least one pore of a size of from about 0.01 //m to about 20 μπι, said porosity and said pore size being substantially retained with said poly(vinyl alcohol) shell enveloping said surfaces.
  8. 8
    10. A method for the preparation of a hydrophilic, polymeric shell about an article having a complex geometric configuration comprising:(a) applying a tactic, hydrophobic, polymeric polyvinyl alcohol precursor to surfaces of the article;and (b) reacting said polymeric precursor with a hydrolysis reagent in situ on said surfaces to form an extremely thin, self-interlocking, tactic, hydrophilic poly(vinyl alcohol) shell enveloping said surfaces while substantially retaining the complex geometric configuration.
  9. 9
    11. The method according to Claim 10, wherein said applying step comprises wiping, dipping, rolling, knifing, or extruding;wherein said precursor is in a solvent which wets said surfaces and solubilizes said precursor in a concentration less than about 15 weight percent;wherein said poly(vinyl alcohol)' shell formed comprises from an average of 10 to about an average of 4000 monolayers of poly(vinyl alcohol) on said surfaces;and wherein said precursor comprises a tactic homopolymer of vinyl trifluoroacetate, a tactic copolymer of vinyl trifluoroacetate monomer and a comonomer having a vinylic group therein, a tactic homopolymer of vinyl tert-butyl ether, or a tactic copolymer of vinyl tert-butyl ether monomer and a monomer having a vinylic group therein.
  10. 10
    12. The method according to Claim 19, wherein said hydrolysis reagent has a pH greater than about 7.0;wherein said hydrolysis reagent is a liquid, solution, or vapor which does not solvate said precursor;and wherein the weight percent of said precursor in a solvent may be adjusted relative to pore sizes of surfaces of the article to control alteration of said complex geometric configuration.
  11. 11
    13. A filter to separate solids from fluids comprising:a polymeric membrane having a complex geometric configuration of porous surfaces and an extremely thin, self-interlocking, tactic, hydrophilic poly(vinyl alcohol) shell enveloping said surfaces while substantially retaining said complex geometric configuration.
  12. 12
    14. The filter according to Claim 13, wherein said membrane is a polyolefin having pores of from about 0.01 jum to about 20 jum;wherein said shell has a sufficient pore wetting surface energy to permit wetting of said surfaces with the fluids;wherein said shell is between about an average of 10 monolayers to about an average of 4000 monolayers thick on said surfaces;wherein said shell is substantially insoluble in water or organic solvents;wherein the membranic filter has a porosity of from about 15 percent to about 99 percent.