EP0808568A1

Intercalates and exfoliates formed with organic pesticide compounds and compositions containing the same

Abstract

Intercalates formed by contacting an activated layered material, e.g., an activated phyllosilicate, with an intercalant pesticide to intercalate an intercalant pesticide between adjacent platelets of the layered material are disclosed. Sufficient intercalant pesticide is sorbed between adjacent platelets to expand the adjacent platelets to a spacing of at least about 5 Å (as measured after water removal to a maximum of 5% by weight water) up to about 100 Å, and preferably in the range of about 10 to about 45 Å, so that, if desired, the intercalate can be exfoliated into individual platelets. The intercalate can be combined with an organic liquid to form a viscous composition for delivery of a pesticide compound. Alternatively, the intercalate can be exfoliated prior to combination with the organic liquid. The intercalated complex also can be admixed with solid particles to provide a granular, dust, or wettable powder pesticide composition.

EP0808568A1, drawing sheet 1
Sheet 1 of 41

Term

Term ended

Projected expiry passed 17 September 2016, 10 years ago.

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

63 claims: 31 independent, 32 dependent

  1. 1
    An intercalate, capable of being exfoliated, comprising a layered material and an intercalant pesticide, formed by contacting the layered material, having adjacent platelets of said layered material, with water or an aqueous solution of a water-soluble intercalant polymer to form an activated layered material, and contacting the activated layered material with an intercalant pesticide to form the intercalate by sorption and complexing of the intercalant pesticide between adjacent spaced layers of the activated layered material to expand the spacing between a predominance of the adjacent platelets of the activated layered material to at least about 5 Å, when measured after sorption of the intercalant pesticide and drying to a maximum of 5% by weight water.
  2. 5
    An intercalate as claimed in any one of the preceding claims, wherein the layered material is activated by water.
  3. 7
    An intercalate as claimed in any one of claims 1 to 4, wherein the layered material is activated by an aqueous solution of a water-soluble intercalant polymer.
  4. 8
    An intercalate as claimed in any one of the preceding claims, wherein the concentration of intercalant pesticide is about 0.01% to about 40% by weight, based on the dry weight of the layered material.
  5. 11
    An intercalate as claimed in any one of claims 1 to 7, wherein the concentration of intercalant pesticide is at least about 8% by weight, based on the dry weight of the layered material.
  6. 15
    An intercalate as claimed in any one of the preceding claims, wherein the intercalant pesticide contains at least one polar moiety.
  7. 18
    An intercalate as claimed in any of claims 1 to 14, wherein the intercalant pesticide lacks a polar moiety.
  8. 19
    An intercalate as claimed in any one of the preceding claims, wherein the pesticide is selected from the group consisting of fungicides, insecticides, herbicides, acaricides, nematocides, rodenticides, miticides, repellents, growth regulators, larvacides, and mixtures thereof.
  9. 20
    An intercalate as claimed in any one of the preceding claims, wherein the pesticide comprises an herbicide.
  10. 22
    An intercalate as claimed in any one of claims 1 to 19, wherein the pesticide comprises an insecticide.
  11. 24
    An intercalate as claimed in any one of the preceding claims, wherein the weight ratio of intercalant polymer to layered material is at least 1:20.
  12. 25
    An intercalate as claimed in any one of the preceding claims, wherein the weight ratio of intercalant polymer to layered material is at least 1:4.
  13. 26
    An intercalate as claimed in any one of the preceding claims, wherein the weight ratio of intercalant pesticide to layered material is at least about 1:2.
  14. 27
    An intercalate as claimed in any one of the preceding claims, wherein the concentration of intercalant polymer is at least about 0.1% by weight, based on the weight of water and polymer.
  15. 29
    An intercalate as claimed in any one of the preceding claims, wherein the concentration of intercalant polymer is at least about 2% by weight, based on the dry weight of layered material, wherein said intercalant polymer has 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.
  16. 30
    An intercalate as claimed in any one of the preceding claims wherein the intercalant polymer is selected from the group consisting of polyvinylpyrrolidone, poly(vinyl alcohol), polyvinylimine, polyacrylic acid, poly(methacrylic acid), poly-(methacrylamide), poly(N,N-dimethylacrylamide), poly(N-acetamideacrylamide), poly(N-acetomethamido-acrylamide), polyvinyloxazolidone, polyvinylmethyloxazolidone, poly-oxyethylene-polyoxypropylene block copolymers, polyethylenimine, and copolymers and mixtures thereof.
  17. 33
    An intercalate as claimed in any one of the preceding claims, wherein the intercalant polymer has a weight average molecular weight in the range of about 100 to about 100,000.
  18. 34
    A method of intercalating a phyllosilicate with a pesticide comprising:contacting the phyllosilicate, having adjacent phyllosilicate platelets, with an activator comprising water and, optionally, a water-soluble polymer, a water-miscible organic solvent, or a mixture thereof, to form an activated phyllosilicate, and contacting the activated phyllosilicate with an intercalant pesticide to achieve intercalation of said intercalant pesticide between said adjacent phyllosilicate platelets in an amount sufficient to space said adjacent phyllosilicate platelets a distance of at least about 5 Å.
  19. 36
    A pesticide composition comprising an organic liquid carrier 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 an intercalated phyllosilicate material, said intercalated phyllosilicate material formed by contacting a phyllosilicate, having adjacent phyllosilicate platelets, with water and, optionally, an intercalant polymer, a water-miscible organic solvent, or a mixture thereof, to form an activated phyllosilicate, and contacting the activated phyllosilicate with an intercalant pesticide to achieve sorption of the intercalant pesticide between adjacent spaced layers of the phyllosilicate sufficient to expand the spacing between a predominance of the adjacent phyllosilicate platelets to at least about 5 Å, when measured after sorption of the intercalant pesticide and at a maximum water content of about 5% by weight, based on the dry weight of the phyllosilicate.
  20. 39
    A composition as claimed in any one of claims 36 to 38, wherein the organic liquid carrier is a monohydric alcohol having 1 to about 5 carbon atoms.
  21. 40
    A composition as claimed in any one of claims 36 to 38, wherein the organic liquid carrier is a polyhydric alcohol selected from the group consisting of glycols, glycerols, and mixtures thereof.
  22. 41
    A composition as claimed in any one of claims 36 to 40, wherein the intercalated phyllosilicate material is free of a compound having an onium ion or a silane coupling agent.
  23. 42
    A composition as claimed in any one of claims 36 to 41, having a viscosity of at least 5000 centipoise.
  24. 43
    A composition as claimed in any one of claims 36 to 42, wherein the composition is a thixotropic gel.
  25. 44
    A pesticide composition comprising an intercalate as claimed in any one of claims 1 to 33, in a concentration of about 0.05% to about 99.5% by weight, and an inert carrier.
  26. 46
    A method of manufacturing a pesticide composition comprising an organic liquid and a phyllosilicate intercalate comprising:(a) contacting a phyllosilicate with an activator comprising water and, optionally, a water-soluble polymer, a water-miscible organic solvent, or a mixture thereof, to form an activated phyllosilicate;and contacting the activated phyllosilicate with an intercalant pesticide, wherein the concentration of said intercalant pesticide is at least about 0.01% intercalant pesticide, based on the dry weight of the phyllosilicate, to form an intercalate having said intercalant pesticide intercalated between said adjacent phyllosilicate platelets in an amount sufficient to space said adjacent phyllosilicate platelets to a distance of at least about 5 Å;and(b) combining the intercalate with said organic liquid.
  27. 49
    A pesticide 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 activated layered material by sorption and complexing of the polymer between adjacent spaced layers of the layered material to expand the spacing between a predominance of the adjacent platelets of said layered 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;and by contacting the activated layer material with an intercalant pesticide to provide the intercalate, wherein the intercalant pesticide is sorbed and complexed between adjacent spaced layers of the layered material.
  28. 52
    A composition as claimed in any one of claims 49 to 51, wherein the moisture content is about 35% to about 40% by weight.
  29. 55
    A method of manufacturing a pesticide composition containing about 10% to about 99.95% by weight of an organic liquid and about 0.05% to about 60% by weight of an intercalated layered material, said intercalated layered material having a pesticide intercalated between and bonded to adjacent platelet surfaces thereof through a bonding mechanism selected from the group consisting of ionic complexing, electrostatic complexing, chelation, hydrogen bonding, dipole/dipole, Van Der Walls forces, and any combination thereof, comprising:(a) contacting a layered material with water and, optionally, a water-soluble intercalant polymer, a water-miscible organic solvent, or a mixture thereof, to form an activated intercalate having said polymer intercalated between said adjacent platelets in an amount sufficient to space said adjacent platelets a distance of at least about 5 Å;(b) contacting the activated intercalate with an intercalant pesticide to form an intercalate having said pesticide intercalated between adjacent platelets of the layered material;(c) combining the intercalate from (b) with the organic liquid;and(d) exfoliating the spaced platelets of said intercalate into predominantly individual platelets.
  30. 59
    A method as claimed in any one of claims 55 to 58, wherein said layered material is a phyllosilicate and the phyllosilicate is contacted with about 4% to about 5000% by weight water, based on the dry weight of said phyllosilicate.
  31. 61
    A method of manufacturing a pesticide composition comprising an organic liquid and a phyllosilicate intercalate comprising:admixing the phyllosilicate with a water-soluble intercalant polymer and water to form an intercalating composition, wherein the weight ratio of the intercalant polymer to phyllosilicate is at least 1 to about 20, and the concentration of said water-soluble intercalant polymer is at least about 5% up to about 900%, based on the dry weight of the phyllosilicate, to form an activated intercalate having said intercalant polymer intercalated between said adjacent phyllosilicate platelets in an amount sufficient to space said adjacent phyllosilicate platelets to a distance of at least about 5 Å;admixing the activated intercalate with an intercalant pesticide to form an intercalate having said intercalant pesticide intercalated between adjacent phyllosilicate platelets;andcombining the intercalate with said organic liquid.
Independent claims31