EP1104778A2

Method of production of composited particle for chemical mechanical polishing

Abstract

An object of the present invention is to provide a method for producing a composited particle in which an inorganic particle is not released, a composited particle produced by this method, and an aqueous dispersion for CMP containing this composited particle. The method for producing a composited particle of the present invention comprises forming a preliminary particle by adhering one or more types of inorganic particles on at least a part of the surface area of a polymer particle, then, polycondensing at least one selected from among organosilicon compounds and organometal compounds in the presence of the above-mentioned preliminary particle. Another object of the present invention is to provide a method for producing an aqueous dispersion for CMP in which generation of a coagulates in production is prevented. In the method for producing an aqueous dispersion for CMP of the present invention, the pH of an aqueous dispersion containing polymer particles and inorganic particles having a zeta potential of the same sign as that of said polymer particles is so changed that the zeta potential of said polymer particles and the zeta potential of said inorganic particles are of opposite signs, to form composite particles composed of the said polymer particles and the said inorganic particles.

EP1104778A2, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 21 November 2020, 5.8 years ago.

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

24 claims: 2 independent, 22 dependent

  1. 1
    A method for producing a composited particle comprising forming a preliminary particle by adhering one or more types of inorganic particles on at least a part of the surface area of a polymer particle, then, polycondensing at least one selected from among organosilicon compounds and organometal compounds in the presence of said preliminary particle.
  2. 2
    The method for producing a composited particle according to Claim 1, wherein said inorganic particle is adhered to said polymer particle via a connecting compound.
  3. 3
    The method for producing a composited particle according to Claim 2, wherein said connecting compound is a silane coupling agent.
  4. 4
    The method for producing a composited particle according to Claim 1, wherein said inorganic particle is adhered to said polymer particle by an electrostatic force.
  5. 5
    The method for producing a composited particle according to Claim 1 or 4, wherein said inorganic particle is of at least one selected from among alumina, titania and ceria.
  6. 6
    The method for producing a composited particle according to Claim 5 wherein said polymer particle has at least one selected from among carboxyl groups, anions thereof, sulfonate groups and anions thereof.
  7. 7
    The method for producing a composited particle according to Claim 5, wherein at least one selected from among negative surfactants and negative water-soluble polymers is adsorbed or chemically-bonded to said polymer particle.
  8. 8
    The method for producing a composited particle according to Claim 1 or 4, wherein said inorganic particle is of at least one selected from among silica and zirconia.
  9. 9
    The method for producing a composited particle according to Claim 8, wherein said polymer particle has at least one selected from among amino groups and cations thereof.
  10. 10
    The method for producing a composited particle according to Claim 8, wherein at least one selected from among positive surfactants and positive water-soluble polymers is adsorbed or chemically-bonded to said polymer particle.
  11. 11
    The method for producing a composited particle according to any one of Claims 1 to 10, wherein said composited particle is formed by adhering a plurality of said inorganic particles on the surface area of said polymer particle.
  12. 12
    The method for producing a composited particle according to any one of Claims 1 to 11, wherein said composited particle is formed by coating at least 5% of surface area of said polymer particle by said inorganic particle.
  13. 13
    The method for producing a composited particle according to any one of Claims 1 to 12, wherein the average particle size of said composited particle is from 0.05 to 0.5 µm, and at least 80% of said composited particle has particle sizes within a range of said average particle size ± 30%.
  14. 14
    A composited particle produced by a method according to any one of Claims 1 to 13.
  15. 15
    An aqueous dispersion for chemical mechanical polishing, comprising composited particles produced by a method according to any one of Claims 1 to 13.
  16. 16
    A method for producing an aqueous dispersion for chemical mechanical polishing, wherein the pH of an aqueous dispersion containing polymer particles and inorganic particles having the zeta potential of the same sign as that of said polymer particles is so changed that the zeta potential of said polymer particles and the zeta potential of said inorganic particles are of opposite signs, to form composite particles composed of said polymer particles and said inorganic particles.
  17. 17
    The method for producing an aqueous dispersion for chemical mechanical polishing according to Claim 16, wherein said inorganic particles are of at least one selected from among alumina, titania and ceria.
  18. 18
    The method for producing an aqueous dispersion for chemical mechanical polishing according to Claim 17, wherein said polymer particles have at least one selected from among carboxyl groups, anions thereof, sulfonate groups and anions thereof.
  19. 19
    The method for producing an aqueous dispersion for chemical mechanical polishing according to Claim 17, wherein at least one selected from among negative surfactants and negative water-soluble polymers is adsorbed or chemically-bonded to said polymer particles.
  20. 20
    The method for producing an aqueous dispersion for chemical mechanical polishing according to Claim 16, wherein said inorganic particles are of at least one selected from among silica and zirconia.
  21. 21
    The method for producing an aqueous dispersion for chemical mechanical polishing according to Claim 20, wherein said polymer particles have at least one selected from among amino groups and cations thereof.
  22. 22
    The method for producing an aqueous dispersion for chemical mechanical polishing according to Claim 20, wherein at least one selected from among positive surfactants and positive water-soluble polymers is adsorbed or chemically-bonded to said polymer particles.
  23. 23
    The method for producing an aqueous dispersion for chemical mechanical polishing according to any one of Claims 16 to 22, wherein said composite particles are formed by coating at least 5% of the surface area of said polymer particles by said inorganic particles.
  24. 24
    The method for producing an aqueous dispersion for chemical mechanical polishing according to any one of Claims 16 to 23, wherein the average particle size of said composite particles is from 0.05 to 0.5 µm, and at least 80% of said composite particles have particle sizes within a range of said average particle size±30%.
Independent claims24