Nova Patents
EP2220184A1

Novel siloxane polymer compositions

Abstract

This record has no abstract on file.

Term

2.2 yearsto projected expiry

Projected expiry 28 November 2028, counted from filing; an application has no term until it is granted.

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

29 claims: 17 independent, 12 dependent

  1. 1
    Claims of equivalent WO 2009068755 A1 Claims:1. A siloxane composition, comprising - a siloxane prepolymer with a siloxane backbone exhibiting a group which is capable of being deprotonated in an aqueous base solution and further exhibiting a reactive functional group, which is capable of reacting during a thermal or radiation initiated curing step, said siloxane prepolymer having been cross-linked during polymerisation to increase the molecular weight thereof, - a solvent for the siloxane prepolymer and - a photo reactive compound.
  2. 4
    The composition according to any of claims 1 to 3, wherein the organosiloxane polymer contains at least 1 mole-%, in particular at least 5 mole-% units derived from monomers comprising at least one group which is capable of being deprotonated.
  3. 5
    The composition of any of claims 1 to 4, wherein the solvent is a solvent capable of reacting with the siloxane prepolymer.
  4. 8
    The composition according to any of claims 1 to 7, wherein the photo reactive compound is a photo acid generator or photo initiator.
  5. 11
    The composition according to any of the preceding claims, wherein the concentration of the photo reactive compound is about 0.1 to 10 %, preferably about 0.5 to 5 %, calculated from the mass of the siloxane polymer.
  6. 12
    The composition according to any of the preceding claims, comprising solid nanoparticles in an amount of between 5 and 50 wt-% of the composition.
  7. 14
    A siloxane composition comprising a siloxane prepolymer in a solvent phase, - said prepolymer having a siloxane backbone formed by repeating -Si-O- units and having a molecular weight in the range of from about 4,000 to about 10,000 g/mol, said siloxane backbone exhibiting hydroxyl groups in an amount of about 5 to 70 % of the -Si-O- units and further exhibiting epoxy groups in an amount of 1 to 15 mol %, calculated from the amount of repeating units;and - said composition further comprising 0.1 - 3 %, based on the weight of the solid matter, at least one cationic photo reactive compound.
  8. 16
    A method of producing a siloxane prepolymer composition according to any of claims 1 to 15, comprising - hydrolysing at least two different silane monomers, - condensating the silane monomers to form a siloxane polymer having a molecular weight of about 2,000 to 20,000 g/mol, - partially cross-linking the siloxane polymer, and - incorporating a photo reactive compound and a solvent for the siloxane polymer, in order to formulate a siloxane prepolymer liquid composition.
  9. 17
    A method of producing a siloxane prepolymer composition, comprising the steps of - hydrolysing at least two different silane monomers, - condensating the silane monomers and cross-linking them to form a siloxane polymer having a molecular weight of about 2,000 to 20,000 g/mol, - recovering the siloxane polymer in a solvent phase, and - incorporating a photo reactive compound into the solvent phase, the silane monomers including monomers containing reactive functional group(s), which is (are) capable of achieving further cross-linking of siloxane polymers under the induction of the photo reactive compound, said hydrolysing and said condensation steps being carried out such that there are at least some hydroxyl groups present in the polymer.
  10. 20
    A method of using a siloxane prepolymer composition according to any of claims 1 to 15 in a lithographic method, comprising the steps of - optionally adjusting the solid contents of the prepolymer composition material to the required film thickness of the deposited film, - depositing the composition on a substrate to form a layer having a film thicknesses of IO nm - 10 μm, - optionally heat treating the deposited film, - subjecting the deposited material layer to lithography by using a photo mask or reticle and exposing the material to UV light, - optionally heat treating the exposed material, and - removing the non-exposed areas of the film are removed in a development step, by contacting the layer with an aqueous basic developer solution.
  11. 23
    The method according to any of claims 20 to 22, wherein a film is produced having a dielectric constant of 4 or below at a frequency of 100 kHz.
  12. 24
    The method according to any of claims 20 to 23, wherein a film is produced having an index of refraction which is between 1.2 to 1.9 at a wavelength of 633 nm.
  13. 25
    The method according to any of claims 20 to 24, wherein a film is produced exhibiting a cross-linking degree of 70 % or more at a UV dose of 100 mJ/cm 2 or less at I- line wavelength of mercury UV source.
  14. 26
    The method according to any of claims 20 to 25, wherein a film is produced having a resolution better than 3μm, preferably better than lμm.
  15. 27
    The method according to any of claims 20 to 26, wherein a film is produced having an aspect ratio of 1 :1 or more, preferably 1 :1,5 or more.
  16. 28
    The method according to any of clams 20 to 27, comprising patterning the material compositions by direct lithographic patterning, by conventional lithographic masking and etching procedure, or by imprinting and embossing.
  17. 29
    The method according to any of clams 20 to 28, comprising providing an optical layer in a display device, such as an LCD, Plasma or OLED display), a solar cell, an LED or a semiconductor device.
Independent claims17