EP3663301A1

Boron-containing compounds, compositions, and methods for the deposition of boron containing films

Abstract

Described herein are boron-containing precursor compounds, and compositions and methods comprising same, for forming boron-containing films. In one aspect, the film is deposited from at least one precursor having the following Formula I or II described herein.

EP3663301A1, drawing sheet 1
Sheet 1 of 32

Term

9.5 yearsto projected expiry

Projected expiry 29 March 2036, counted from filing; an application has no term until it is granted.

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

11 claims: 4 independent, 7 dependent

  1. 1
    A method to deposit a boron-containing film onto at least a surface of a substrate which comprises the steps of:providing the substrate in a reactor;forming the boron-containing film on the surface in a deposition process selected from a chemical vapor deposition and atomic layer deposition process using a boron-containing precursor selected from at least one compound having the following formula I and II: wherein R 1 is selected from a branched C 3 to C 10 alkyl group;and R 2 is selected from hydrogen, and a branched C 3 to C 10 alkyl group.
  2. 2
    A method of forming a boron doped silicon nitride, boron doped silicon carbonitride, boron doped silicon carboxynitride film via an atomic layer deposition process or ALD-like process, the method comprising the steps of:a. providing a substrate in a reactor;b. introducing into the reactor at least one boron-containing precursor represented by the following Formula I and II below: wherein R 1 is selected from a branched C 3 to C 10 alkyl group;and R 2 is selected from hydrogen, and a branched C 3 to C 10 alkyl group;c. purging the reactor with a purge gas;d. providing at least one nitrogen-containing source to deposit the film onto the at least one surface;e. purging the reactor with a purge gas;f. introducing into the reactor at least one silicon-containing source;g. purging the reactor with a purge gas;h. providing at least one nitrogen-containing source to deposit the film onto the at least one surface;i. purging the reactor with a purge gas;wherein steps b through i are repeated until a desired thickness of the film is obtained.
  3. 4
    A method of forming a boron doped silicon oxide, boron doped silicon carboxide film via an atomic layer deposition process or ALD-like process, the method comprising the steps of:a. providing a substrate in a reactor;b. introducing into the reactor at least one boron-containing precursor represented by the following Formula I and II below: wherein R 1 is selected from a branched C 3 to C 10 alkyl group;and R 2 is selected from hydrogen, and a branched C 3 to C 10 alkyl group;c. purging the reactor with a purge gas;d. providing at least one oxygen-containing source to deposit the film onto the at least one surface;e. purging the reactor with a purge gas;f. introducing into the reactor at least one silicon-containing source;g. purging the reactor with a purge gas;h. providing at least one oxygen-containing source to deposit the film onto the at least one surface;i. purging the reactor with a purge gas;wherein steps b through i are repeated until a desired thickness of the film is obtained.
  4. 6
    A method of forming a boron doped metal nitride, boron doped metal carbonitride, boron doped metal carboxynitride film via an atomic layer deposition process or ALD-like process, the method comprising the steps of:a. providing a substrate in a reactor;b. introducing into the reactor at least one boron-containing precursor represented by the following Formula I and II below: wherein R 1 is selected from a branched C 3 to C 10 alkyl group;and R 2 is selected from hydrogen, and a branched C 3 to C 10 alkyl group;c. purging the reactor with a purge gas;d. providing at least one nitrogen-containing source to deposit the film onto the at least one surface;e. purging the reactor with a purge gas;f. introducing into the reactor at least one metal-containing source;g. purging the reactor with a purge gas;h. providing at least one nitrogen-containing source to deposit the film onto the at least one surface;i. purging the reactor with a purge gas;wherein steps b through i are repeated until a desired thickness of the film is obtained.