EP0747451A2

Intercalates and exfoliates formed with oligomers and polymers and composite materials containing same

Abstract

Nanocomposites are manufactured by combining a host material, such as an organic solvent or a matrix polymer and exfoliated intercalates formed by contacting a phyllosilicate with a polymer to adsorb or intercalate the polymer between adjacent phyllosilicate platelets. Sufficient polymer is adsorbed between adjacent phyllosilicate platelets to expand the adjacent platelets to a spacing of at least about 5 Å, preferably at least about 10 Å (as measured after water removal), up to about 100 Å and preferably in the range of about 30-40 Å, so that the intercalate easily can be exfoliated, e.g., when mixed with an organic solvent or a polymer melt, to provide a carrier material for drugs and the like, or to provide a matrix polymer/platelet composite (nanocomposite) material - the platelets being exfoliated from the intercalate.

EP0747451A2, drawing sheet 1
Sheet 1 of 37

Term

Term ended

Projected expiry passed 22 May 2016, 10.3 years ago.

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  2. Filed
  3. Published
  4. Projected expiry
  5. Today

39 claims: 14 independent, 25 dependent

  1. 1
    A composite material comprising a host material in an amount of about 40% to about 99.95% by weight of the composite material, and about 0.05% to about 60% by weight exfoliated platelets of a phyllosilicate material, said platelets derived from an intercalate formed by contacting a phyllosilicate with an intercalant polymer-containing composition, said composition having a concentration of said intercalant polymer of at least about 2% by weight polymer, to achieve sorption of the intercalant polymer between adjacent spaced layers of the phyllosilicate to expand the spacing between a predominance of the adjacent phyllosilicate platelets to at least about 10 Å, when measured after sorption of the intercalant polymer.
  2. 13
    An intercalate as claimed in any one of the preceding claims, wherein the intercalant polymer is selected from the group consisting of polyvinyl pyrrolidone;polyvinyl alcohol;polyvinylimine;and mixtures thereof.
  3. 16
    An intercalate as claimed in any one of the preceding claims, wherein the intercalant polymer is selected from the group consisting of N-methylpyrrolidone, N-ethylpyrrolidone, N-vinylpyrrolidone, and mixtures thereof.
  4. 17
    A composite material as claimed in any one of the preceding claims, wherein the intercalant polymer has a weight average molecular weight in the range of about 225 to about 1,000,000.
  5. 19
    A composite material as claimed in any one of the preceding claims, wherein the host material is a matrix polymer selected from the group consisting of a polyamide;polyvinylimine;polyethylene terephthalate;polybutylene terephthalate;a polymer polymerized from a monomer selected from the group consisting of dihydroxyethyl terephthalate;hydroxyethyl terephthalate;dihydroxybutyl terephthalate;and mixtures thereof.
  6. 20
    A method of manufacturing a composite material containing about 40% to about 99.95% by weight of a matrix thermoplastic or thermosetting polymer, and about 0.05% to about 60% by weight of exfoliated platelets of a phyllosilicate material, said platelets derived from an intercalated phyllosilicate having an intercalant polymer intercalated between adjacent phyllosilicate platelets comprising:contacting the phyllosilicate with an intercalant polymer-containing composition comprising at least about 5% by weight of said intercalant polymer, to achieve intercalation of said polymer between said adjacent phyllosilicate platelets in an amount sufficient to space said adjacent phyllosilicate platelets a distance of at least about 5 Å;combining the intercalated platelets with said thermoplastic or thermosetting polymer, and heating the thermoplastic polymer sufficiently to provide for flow of said thermoplastic polymer and delamination of the platelets of said phyllosilicate;anddispersing of said delaminated platelets throughout said matrix polymer.
  7. 24
    A method of exfoliating a phyllosilicate comprising:contacting the phyllosilicate, having a moisture content of at least about 4% by weight, with an intercalating composition comprising at least about 2% by weight of an intercalant polymer in a liquid carrier, to achieve intercalation of said polymer between said adjacent phyllosilicate platelets in an amount sufficient to space said adjacent phyllosilicate platelets a distance of at least about 5 Å;andseparating the platelets of the intercalated phyllosilicate.
  8. 29
    A composite material comprising a matrix polymer selected from the group consisting of a thermoplastic polymer, a thermosetting polymer, and mixtures thereof, in an amount of about 40% to about 99.95% by weight of the composite material, and about 0.05% to about 60% by weight exfoliated platelets of a phyllosilicate material, said platelets derived from an intercalate formed by contacting a phyllosilicate, having a water content of at least about 4% by weight, with an intercalant polymer to form an intercalating composition, thereby achieving sorption of the intercalant polymer between adjacent spaced layers of the phyllosilicate to expand the spacing between a predominance of the adjacent phyllosilicate platelets to at least about 10 Å, when measured after sorption of the polymer, and thereafter exfoliating the intercalate into a predominance of single platelets.
  9. 31
    A composition comprising an intercalate, together with an organic solvent, said intercalate formed by contacting a layered material, having a moisture content of at least about 4% by weight, with an intercalant polymer to form an intercalating composition, said intercalate having a weight ratio of polymer to layered material of at least 1:20, to achieve sorption and complexing of the polymer between adjacent spaced layers of the layered silicate material to expand the spacing between a predominance of the adjacent platelets of said layered silicate material to at least about 5 Å, when measured after sorption of the intercalant polymer and drying to a maximum of 5% by weight water.
  10. 34
    A composition as claimed in any one of claims 31 to 33, wherein the concentration of intercalant polymer in said intercalating composition is at least about 20% by weight, based on the dry weight of layered material in the intercalating composition, and wherein said intercalant polymer includes a functionality selected from the group consisting of an aromatic ring, a carboxyl, a hydroxyl, a carbonyl, an ether, an ester, an amine, an amide, an SOx, a POx, wherein x = 2,3 or 4, and mixtures thereof.
  11. 35
    A composition as claimed in any one of claims 31 to 34, wherein the intercalant polymer is selected from the group consisting of polyvinylpyrrolidone;polyvinyl alcohol;polyvinylimine;and mixtures thereof.
  12. 36
    A composition as claimed in any one of claims 31 to 35, wherein the intercalant polymer is polyvinylpyrrolidone.
  13. 37
    A method of increasing the viscosity of an organic liquid by combining said organic liquid with an intercalate complex of a phyllosilicate and polymer comprising:contacting the phyllosilicate, having a water content of at least about 4% by weight, with an intercalant polymer to form an intercalating composition having a weight ratio of intercalant polymer to phyllosilicate of at least 1:20, to form an intercalate, wherein intercalation of said polymer between said adjacent phyllosilicate platelets of said intercalate is sufficient to space said adjacent phyllosilicate platelets a distance of at least about 5 Å;andcombining said intercalate with said organic liquid.
  14. 39
    A composition comprising an organic liquid selected from the group consisting of monohydric alcohols, polyhydric alcohols and mixtures thereof, in an amount of about 40% to about 99.95% by weight of the composition and about 0.05% to about 60% by weight of the composition of an intercalate, or exfoliate thereof, of a phyllosilicate material, said intercalate formed by contacting a phyllosilicate, having a water content of at least about 4% by weight, with an intercalant polymer to form said intercalate having said intercalant polymer sorbed between adjacent spaced layers of the phyllosilicate and complexed on platelet surfaces of said phyllosilicate to expand the spacing between a predominance of the adjacent phyllosilicate platelets to at least about 5 Å, when measured after sorption of the polymer and drying of the intercalate to a maximum water content of 5% by weight.