IP Library › Granted Patent US 7,964,442
Granted Patent B2
US 7,964,442 · App. 11/869,416 · Granted Jun 21, 2011

Methods to obtain low k dielectric barrier with superior etch resistivity

Assignee: Applied Materials, Inc.
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Quick Facts
Patent No.
US 7,964,442
App. No.
11/869,416
Granted
Jun 21, 2011
Kind
B2
Abstract

The present invention generally provides a method for forming a dielectric barrier with lowered dielectric constant, improved etching resistivity and good barrier property. One embodiment provides a method for processing a semiconductor substrate comprising flowing a precursor to a processing chamber, wherein the precursor comprises silicon-carbon bonds and carbon-carbon bonds, and generating a low density plasma of the precursor in the processing chamber to form a dielectric barrier film having carbon-carbon bonds on the semiconductor substrate, wherein the at least a portion of carbon-carbon bonds in the precursor is preserved in the low density plasma and incorporated in the dielectric barrier film.

Claims (10)

1. A method for processing a semiconductor substrate, comprising:

flowing a precursor to a processing chamber, wherein the precursor comprises a mixture of an organosilicon compound and a hydrocarbon compound, the organosilicon compound comprises silicon-carbon bonds and carbon-carbon bonds, and the hydrocarbon compound comprises carbon-carbon bonds, and wherein the precursor comprises a double carbon-carbon bond (C═C) source or a triple carbon-carbon bond (C≡C) source;

generating a low density plasma of the precursor in the processing chamber to form a dielectric barrier film having carbon-carbon bonds on the semiconductor substrate, wherein at least a portion of the carbon-carbon bonds in the precursor is preserved in the low density plasma and incorporated in the dielectric barrier film, and the dielectric barrier film does not contain Si—O bonds; and

introducing a controlled amount of a nitrogen source to eliminate double carbon-carbon (C═C) bonds or triple carbon-carbon (C≡C) bonds from the dielectric barrier film.

2. A method for processing a semiconductor substrate, comprising:

flowing a precursor to a processing chamber, wherein the precursor comprises a mixture of an organosilicon compound, trimethylsilane, and ethylene (C 2 H 4 ), the organosilicon compound comprises silicon-carbon bonds and carbon-carbon bonds, and wherein a ratio of trimethylsilane and ethylene is set that an atomic percentage of carbon in the precursor is greater than 15%; and

generating a low density plasma of the precursor in the processing chamber to form a dielectric barrier film having carbon-carbon bonds on the semiconductor substrate, wherein at least a portion of the carbon-carbon bonds in the precursor is preserved in the low density plasma and incorporated in the dielectric barrier film, and the dielectric barrier film does not contain Si—O bonds.

3. A method for processing a semiconductor substrate, comprising:

flowing a precursor to a processing chamber, wherein the precursor comprises a mixture of an organosilicon compound, trimethylsilane, and ethylene (C 2 H 4 ), the organosilicon compound comprises silicon-carbon bonds and carbon-carbon bonds, and wherein the precursor further comprises ammonia (NH 3 ), a ratio of ethylene and trimethylsilane is between 3:1 and 5:1, and a ratio of ammonia and trimethylsilane is between about 1:10 to about 10:1; and

generating a low density plasma of the precursor in the processing chamber to form a dielectric barrier film having carbon-carbon bonds on the semiconductor substrate, wherein at least a portion of the carbon-carbon bonds in the precursor is preserved in the low density plasma and incorporated in the dielectric barrier film, and the dielectric barrier film does not contain Si—O bonds.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2007
From: XU, HUIWEN; LIU, YIJUN; XIA, LI-QUN; WITTY, DEREK R; M'SAAD, HICHEM
To: APPLIED MATERIALS, INC.
Reel/Frame 020250/0307 →
Continuity (1)
Related Publication 20090093132A1 · Apr 9, 2009