Claims
- 1. A substrate having a solid polymeric coating thereon, the coating having been obtained by
(1) applying to the substrate an aqueous dispersion of solid particles comprising a crystalline polymer, the polymer (a) having a melting point Tm and (b) comprising units derived from a hydrophobic monomer, and (2) evaporating water from the dispersion to form the solid polymeric coating; the coating having at least one of the following characteristics: (A) at temperatures below Tm, the coating is substantially impermeable to water (as hereinbefore defined), and at temperatures above Tm, the coating is substantially permeable to water (as hereinbefore defined); (B) the polymer is a crosslinked polymer having a gel content of at least 50%, (C) the polymer is derived from a monomer component comprising:
(i) a hydrophobic monomer component comprising a first hydrophobic monomer, the first hydrophobic monomer being such that a homopolymer thereof is crystalline and has a melting point Tc, and (ii) a hydrophilic monomer component comprising a hydrophilic monomer, the ratio by weight of the hydrophobic monomer component to the hydrophilic monomer component being 10:1 to 50:1; (D) the polymer is derived from a monomer component comprising a hydrophobic monomer component comprising (i) a first hydrophobic monomer, the first hydrophobic monomer being such that a homopolymer thereof is crystalline and has a melting point Tc, and (ii) a second hydrophobic monomer which
(a) is such that a homopolymer thereof is amorphous and has a glass transition point Tg which is less than Tc, and (b) is present in amount such that Tm is (Tc−5)° C. or less; (E) the polymer is derived from a monomer component comprising a hydrophobic monomer component comprising (i) a first hydrophobic monomer, the first hydrophobic monomer being such that a homopolymer thereof is crystalline and has a melting point Tc, and (ii) a second hydrophobic monomer which
(a) is such that a homopolymer thereof is amorphous and has a glass transition point Tg which is more than Tc, and (b) is present in amount such that the coating has a tack at (Tc+10)° C. which is less than the tack at (Tc+10)° C. of a coating formed under the same conditions from a composition which is identical except that the crystalline polymer does not contain units derived from the second hydrophobic monomer; (F) the polymer is derived from a monomer component comprising:
(i) a hydrophobic monomer component comprising a hydrophobic monomer, the hydrophobic monomer being such that a homopolymer thereof is crystalline and has a melting point Tc; (ii) a hydrophilic monomer component comprising a hydrophilic monomer; and (iii) a crosslinking monomer having at least two polymerizable groups; (G) the polymer is derived from a monomer component comprising one or more monomers containing carboxyl groups, at least 75% of the carboxyl groups having been neutralized; (H) the polymer is crosslinked by an external crosslinker (as hereinbefore defined); (I) the particles of the dispersion have coalesced to form a continuous coating, but retain a particulate character; (J) the coating contains less than 1% of unreacted monomer, based on the weight of the polymer; and (K) at least some of the particles comprise a core comprising said crystalline polymer and a coating around the core comprising a substantially amorphous polymer.
- 2. A substrate according to claim 1 wherein the crystalline polymer is a side chain crystalline (SCC) polymer having an onset-of-melting temperature, Tc, which is more than (Tm−10)° C.
- 3. A method of treating a seed or other organism to extend its dormancy, the method comprising:
(a) applying to the organism a non-phytotoxic coating composition which comprises:
(i) water, and (ii) suspended in the water, particles which comprise a crystalline polymer having a melting point Tm of 0° to 40° C.; and (b) causing water to evaporate from the composition after the composition has been applied to the organism, thereby forming a coating which has a particulate character and
(i) at temperatures below Tm is substantially impermeable to water (as hereinafter defined), and (ii) at temperatures above Tm is substantially permeable to water (as hereinafter defined).
- 4. A method according to claim 3 wherein the crystalline polymer is a crosslinked polymer which
(a) has a gel content of at least 50%; (b) contains less than 1% of unreacted monomer; and (c) is derived from a monomer component comprising:
(i) a hydrophobic monomer component comprising a first hydrophobic monomer, the first hydrophobic monomer being such that a homopolymer thereof is crystalline and has a melting point Tc; (ii) a hydrophilic monomer component comprising a hydrophilic monomer; and (iii) a crosslinking monomer having at least two polymerizable groups.
- 5. A method according to claim 3 or 4 wherein the crystalline polymer is a side chain crystalline (SCC) polymer having an onset-of-melting temperature, To, which is more than (Tm−10)° C.
- 6. A composition which comprises:
(a) water, (b) suspended in the water, particles comprising a crosslinked crystalline polymer which
(i) has a gel content of at least 50%, (ii) contains less than 1% of unreacted monomer, and (iii) is derived from a monomer component comprising:
1) a hydrophobic monomer component comprising a first hydrophobic monomer, the first hydrophobic monomer being such that a homopolymer thereof is crystalline and has melting point Tc, and 2) a hydrophilic monomer component comprising a hydrophilic monomer, and 3) a crosslinking monomer having at least two polymerizable groups; and (c) a surfactant.
- 7. A composition according to claim 6 wherein the hydrophobic monomer component comprises, in addition to the first hydrophobic monomer, a second hydrophobic monomer which
(a) is such that a homopolymer thereof is amorphous and has a glass transition point Tg which is less than Tc, and (b) is present in amount such that Tm is (Tc−5)° C. or less.
- 8. A composition according to claim 6 wherein the hydrophobic monomer component comprises, in addition to the first hydrophobic monomer, a second hydrophobic monomer which
(a) is such that a homopolymer thereof is amorphous and has a glass transition point Tg which is more than Tc, and (b) is present in amount such that a coating formed from the composition has a tack at (Tc+10)° C. which is less than the tack at (Tc+10)° C. of a coating formed under the same conditions from a composition which is identical except that the crystalline polymer does not contain units derived from the second hydrophobic monomer.
- 9. A composition according to claim 7 or 8 wherein the average particle size is less than 0.5 micron.
- 10. A method of making a composition as claimed in any one of claims 6 to 9, the method comprising:
(a) providing an aqueous reaction medium comprising:
(i) water, (ii) the monomer component, the monomer component containing at least 2% by weight, based on the weight of the monomer component, of the hydrophilic monomer component, (iii) the surfactant, and (iv) at least 1% by weight, based on the weight of the water, of a cosolvent which increases the solubility of the hydrophobic monomer component in the water; (b) polymerizing the monomer component in the aqueous reaction medium so that at least 99% by weight of the monomer component polymerizes to form the crystalline polymer in the form of particles having an average particle size less than 0.5 micron, the monomer component being present in amount such that at the end of the polymerization, the solid polymer content of the reaction mixture is at least 30%; and
(i) the surfactant being present in amount such that the monomer component is initially present in the aqueous reaction medium in the form of droplets having a diameter greater than 10 microns, and/or (ii) the surfactant and the cosolvent being present in amount such that the hydrophilic monomer component is substantially randomly polymerized in the crystalline copolymer.
- 11. A method for preparing an aqueous suspension, the method comprising the steps of:
(a) providing an aqueous reaction medium comprising:
(i) water, (ii) a first monomer component comprising a hydrophobic monomer component comprising a first hydrophobic monomer, the first hydrophobic monomer being such that a homopolymer thereof is crystalline, and (iii) a surfactant; b) polymerizing the first monomer component to form a crystalline polymer in the form of particles suspended in the reaction medium; and c) polymerizing a second monomer component to form a shell on said particles, the amounts of said first and second monomer components being such that the product of step (c) has a solids content of at least 30%, and the amount of surfactant being such that the product of step (c) contains particles having an average particle size of less than 0.5 microns and a residual monomer content of less than 1%, based on the weight of the first and second monomer components.
- 12. A composition suitable for use in setting a flexible fibrous material, the composition comprising:
(a) water; (b) particles suspended in the water, the particles comprising a crystalline polymer; and c) an effective amount of an additive having a desired effect on the fibrous material.
- 13. A composition according to claim 21, wherein the crystalline polymer has a Tm of 40 to 60° C., the fibrous material is human hair, and the additive is a hair care additive.
- 14. A composition according to claim 21 wherein the fibrous material is a fabric and the additive is a fabric-treating compound.
- 15. A method for rendering a flexible fibrous material repeatedly settable, the method comprising:
(1) applying to the fibrous material a composition as claimed in any one of claims 12 to 14; and (2) evaporating the water from the composition while the composition is in contact with the fibrous material, thereby forming a coating on the fibrous material.
Parent Case Info
[0001] This application is a continuation-in-part of the following applications, and claims priority therefrom: U.S. patent application Ser. No. 08/766,865 filed Dec. 12, 1996; U.S. patent application Ser. No. 08/769,639 filed Dec. 12, 1996; U.S. patent application Ser. No. 08/929,750 filed Sep. 15, 1997; and PCT Application No. PCT/US97/22772 filed Dec. 12, 1997. Each of these applications is incorporated herein by reference.
Continuations (1)
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Parent |
09764552 |
Jan 2001 |
US |
Child |
10321187 |
Dec 2002 |
US |
Continuation in Parts (4)
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Date |
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08766865 |
Dec 1996 |
US |
Child |
09764552 |
Jan 2001 |
US |
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08769639 |
Dec 1996 |
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Child |
09764552 |
Jan 2001 |
US |
Parent |
08929750 |
Sep 1997 |
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Child |
09764552 |
Jan 2001 |
US |
Parent |
PCT/US97/22772 |
Dec 1997 |
US |
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09764552 |
Jan 2001 |
US |