EP0346074A2

Mass of fine particles of inorganic material and method of producing the same, ultrathin film of the inorganic fine particles and method of making the same, magnetic recording medium and method of providing the same method of manufacturing patterns of inorganic material, and method of manufacturing wirings of inorganic material.

Abstract

The present invention concerns a field of dealing with inorganic fine particles (1), and provides a mass of the inorganic fine particles and method of producing the mass, and as applications of the method, an ultrathin film of inorganic fine particles and method of producing the ultrathin film, a magnetic recording medium and method of manufacturing the medium, and a method of manufacturing an inorganic pattern and method of manufacturing a inorganic wiring. Furthermore, the present invention provides the magnetic recording medium by covering the inorganic fine particles with a monomolecular film (2) of a silane type surface active agent through chemical adsorp­tion and permitting the inorganic fine particles and the monomolecular film to have functions.

EP0346074A2, drawing sheet 1
Sheet 1 of 22

Term

Term ended

Projected expiry passed 6 June 2009, 17.3 years ago.

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  2. Filed
  3. Published
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39 claims: 8 independent, 31 dependent

  1. 1
    A mass of inorganic fine particles which each is covered with a monomolecular film of a silane type surface active agent, at least part of said monomolecular films is chemically bonded to the monomolecular films formed on the surfaces of adjacent inorganic fine particles.
  2. 2
    The mass of inorganic fine particles according to Claim 1, wherein a film of oxides of inorganic fine particle constituting-ingredients is formed on the surface of the inorganic fine particles.
  3. 3
    The mass of inorganic fine particles according to Claim 1, wherein end groups on one side of said silane type surface active agent and the inorganic fine particles form a siloxane bond of
  4. 4
    The mass of inorganic fine particles according to Claim 1, wherein said silane type surface active agent comprises a straight hydrocarbon chain.
  5. 5
    The mass of inorganic fine particles according to Claim 1, wherein a number of the CH₂ group forming the straight-chain hydrocarbon of said silane type surface active agent is 10 or more.
  6. 6
    The mass of inorganic fine particles according to Claim 1, wherein said silane type surface active agent contains a functional group.
  7. 7
    The mass of inorganic fine particles according to Claim 1, wherein said silane type surface active agent is chemically bonded to the surface of said inorganic fine particles.
  8. 8
    The mass of inorganic fine particles according to Claim 1, wherein the functional group included in the silane type surface active agent chemically adsorbed on the surface of the inorganic fine particles is chemically bonded to the functional group included in the silane type surface active agent chemically adsorbed on the surface of at least one of the adjacent inorganic fine particles.
  9. 9
    An ultrathin film of inorganic fine particles, which comprises the inorganic fine particles fixed in the ultrathin film form and an organic thin film of a silane type surface active agent formed on the surface of said inroganic fine particles, at least part of the functional groups included in said silane type surface active agent being chemically bonded to each other.
  10. 10
    The ultrathin film of inorganic fine particles according to Claim 9, wherein a film of oxides of inorganic fine particle constituting-ingredients is formed on the surface of the inorganic fine particle.
  11. 11
    The ultrathin film of inorganic fine particles according to Claim 9, wherein end groups on one side of said silane type surface active agent and the inorganic fine particles form a siloxane bond of
  12. 12
    The ultrathin film of inorganic fine particles according to Claim 9, wherein said silane type surface active agent comprises a straight hydrocarbon chain.
  13. 13
    The ultrathin film of inorganic fine particles according to Claim 9, wherein a number of the CH₂ group forming the straight-chain hydrocarbon of said silane type surface active agent is 10 or more.
  14. 14
    The ultrathin film of inorganic fine particles according to Claim 9, wherein said silane type surface active agent contains a functional group.
  15. 15
    The ultrathin film of inorganic fine particles according to Claim 9, wherein said silane type surface active agent is chemically bonded to the surface of said inorganic fine particles.
  16. 16
    The ultrathin film of inorganic fine particles according to Claim 9, wherein the functional group included in the silane type surface active agent chemically adsorbed on the surface of the inorganic fine particles is chemically bonded to the functional group included in the silane type surface active agent chemically adsorbed on the surface of at least one of the adjacent inorganic fine particles.
  17. 17
    A method of producing a mass of inorganic fine particles, which comprises steps of reacting the inorganic fine particles on the surface thereof with a silane type surface active agent containing a straight hydrocarbon chain and a functional group to form a monomolecular film on the surface of said inorganic fine particles, making the inorganic fine particles covered with the monomole­cular film in a predetermined density on a substrate, and subjecting the monomolecular film to physical or chemical treatment to allow the functional groups to be chemically bonded to each other.
  18. 18
    The method of producing the mass of inorganic fine particles according to Claim 17, wherein a chemical adsorbing method is used in forming the monomolecular film of the silane type surface active agent on the surface of the inorganic fine particles.
  19. 19
    The method of producing the mass of inorganic fine particles according to Claim 17, wherein said silane surface active agent has a straight-chain hydrocarbyl group containing 10 or more CH₂ groups, polymerizing groups at one end thereof and a group of being adsorbed at the other end thereof on the surface of said inorganic fine particles.
  20. 20
    The method of producing the mass of inorganic fine particles according to Claim 17, wherein the group in said silane type surface active agent of being adsorbed on the surface of said inorganic fine particles is mono-, di- or tri-chlorosilane group.
  21. 21
    The method of producing the mass of inorganic fine particles according to Claim 17, wherein said polymerizing group is an unsaturated bonding group.
  22. 22
    The method of producing the mass of inorganic fine particles according to Claim 17, wherein said physical treatment is carried out with an energy beam such as ultraviolet rays, far ultraviolet rays, electron beam and X-rays.
  23. 23
    The method of producing the mass of inorganic fine particles according to Claim 17, wherein said chemical treatment is carried out in the presence of a catalyst.
  24. 24
    A method of producing an ultrathin film of inorganic fine particles, which comprises steps of forming a monomolecular film of a silane type surface active agent uniformly on the surface of inorganic fine particles, developing said inorganic fine particles on a gas-liquid interface, transferring said inorganic fine particles onto a substrate, and subjecting the inorganic fine particles transferred on the substrate to physical or chemical treatment, thereby allowing the groups in the silane type surface active agent to be chemically bonded to each other.
  25. 25
    The method of producing an ultrathin film of inorganic fine particles according to Claim 24, wherein the step of transferring the inorganic fine particles onto the substrate is carried out with a Langmuir-Blodgett's method.
  26. 26
    The method of producing an ultrathin film of inorganic fine particles according to Claim 24, wherein said silane surface active agent has a straight-chain hydrocarbyl group containing 10 or more CH₂ groups, polymerizing groups at one end thereof and a group of being adsorbed at the other end thereof on the surface of said inorganic fine particles.
  27. 27
    The method of producing an ultrathin film of inorganic fine particles according to Claim 24, wherein the group in said silane type surface active agent of being adsorbed on the surface of said inorganic fine particles is mono-, di- or tri-chlorosilane group.
  28. 28
    The method of producing an ultrathin film of inorganic fine particles according to Claim 24, wherein said polymerizing group is an unsaturated bonding group.
  29. 29
    The method of producing an ultrathin film of inorganic fine particles according to Claim 24, wherein said physical treatment is carried out with an energy beam such as ultraviolet rays, far ultraviolet rays, electron beam and X-rays.
  30. 30
    The method of producing an ultrathin film of inorganic fine particles according to Claim 24, wherein said chemical treatment is carried out in the presence of a catalyst.
  31. 31
    A magnetic recording material, which comprises a substrate and a thin film of magnetic inorganic fine particles covered with a monomolecular film of a silane type surface active agent on the substrate, the groups in said silane type surface active agent being chemically bonded to each other.
  32. 32
    A method of manufacturing a magnetic recording medium, which comprises steps of forming a monomolecular film of a silane type surface active agent uniformly on the surface of magnetic inorganic fine particles, forming a film of said magnetic inorganic fine particles on a substrate for said magnetic recording medium, and subject­ing said film of the magnetic inorganic fine particles formed on said substrate to physical or chemical treatment to allow the groups in said silane type surface active agent to be chemically bonded to each other.
  33. 33
    The method of manufacturing a magnetic recording medium according to Claim 32, wherein said physical treatment is carried out in a magnetic field.
  34. 34
    The method of manufacturing a magnetic recording medium according to Claim 32, wherein said film of magnetic inorganic fine particles is formed by a spin coating technique on said substrate.
  35. 35
    The method of manufacturing a magnetic recording medium according to Claim 32, wherein the step of forming said film of the magnetic inorganic fine particles onto the substrate is carried out with a Langmuir-Blodgett's method.
  36. 36
    The method of manufacturing a magnetic recording medium according to Claim 35, wherein the step of forming said film of the magnetic inorganic fine particles is carried out in a magnetic field.
  37. 37
    The method of manufacturing a magnetic recording medium according to Claim 32, wherein a step of magnetizing the magnetic inorganic fine particles is inserted between the step of forming the monomolecular film of silane type surface active agent uniformly on the surface of said magnetic inorganic fine particles and the step of forming the film of said magnetic inorganic fine particles on the substrate for the magnetic recording medium.
  38. 38
    A method of manufacturing an inorganic pattern, which comprises steps of reacting a silane type surface active agent containing a straight hydrocarbon chain and a functional group with the surface of inorganic fine particles to form a monomolecular film of the agent on said surface of inorganic fine particles, making the inorganic fine particles covered with the monomolecular film in a predetermined density on a substrate, and subjecting the monomolecular film at portions on which said inorganic pattern is to be formed, to physical treatment to allow the functional groups to be chemically bonded to each other.
  39. 39
    A method of manufacturing an inorganic pattern, which comprises steps of reacting a silane type surface active agent containing a straight hydrocarbon chain and a functional group with the surface of inorganic fine particles to form a monomolecular film of the agent on said surface of inorganic fine particles, making the inorganic fine particles covered with the monomolecular film in a predetermined density on a substrate, subjecting the monomolecular film at portions on which said inorganic pattern is to be formed, to physical treatment to allow the functional groups to be chemically bonded to each other, and heat treating said inorganic pattern.
Independent claims39