US20120037594A1

Method for manufacturing porous structure and method for forming pattern

Claim Score by NHIP

Read claim 41, the broadest

Abstract

A pattern forming material contains a block copolymer or graft copolymer and forms a structure having micro polymer phases, in which, with respect to at least two polymer chains among polymer chains constituting the block copolymer or graft copolymer, the ratio between N/(Nc−No) values of monomer units constituting respective polymer chains is 1.4 or more, where N represents total number of atoms in the monomer unit, Nc represents the number of carbon atoms in the monomer unit, No represents the number of oxygen atoms in the monomer unit.

US20120037594A1, drawing sheet 1
Sheet 1 of 48

Term

Term ended

Projected expiry passed 7 June 2020, 6.3 years ago.

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10 claims: 3 independent, 7 dependent

  1. 41
    Broadest claimClaim Score 69, broad(NHIP)A method for forming a pattern comprising:forming a pattern transfer film on a substrate;forming a film made of a pattern forming material comprising a block copolymer or graft copolymer having two polymer chains whose ratio between dry etching rates is 1.3 or more on the pattern transfer film;annealing the film to form a microphase-separated structure in the film;ion-etching the film to selectively remove a polymer phase from the microphase-separated structure formed in the film;etching the pattern transfer film by using remaining another polymer phase as a mask, thereby transferring the pattern of the microphase-separated structure to the pattern transfer film;and etching the substrate by using the pattern transfer film as a mask in which the microphase-separated structure is transferred, thereby transferring the pattern of the microphase-separated structure to the substrate.
  2. 49
    A method for forming a pattern comprising:forming a pattern transfer film on a substrate;forming, on the pattern transfer film, a film made of a pattern forming material comprising a block copolymer or graft copolymer having a first polymer chain a main chain of which is to be cleaved by irradiation with an energy beam and a second polymer chain a main chain of which is more indecomposable against irradiation with the energy beam than the first polymer chain;annealing the film to form a microphase-separated structure in the film;irradiating the film with the energy beam, thereby cleaving the main chain of the first polymer phase in the microphase-separated structure;selectively removing the first polymer phase from the microphase-separated structure by rinsing with a solvent or by evaporation through heat treatment;etching the pattern transfer film by using remaining another polymer phase as a mask, thereby transferring the pattern of the microphase-separated structure to the pattern transfer film;and etching the substrate by using the pattern transfer film as a mask in which the microphase-separated structure is transferred, thereby transferring the pattern of the microphase-separated structure to the substrate.