2004•Journal of Sensor Science and TechnologyOpen access

Characteristics of TaN by Atomic Layer Deposition as a Copper Diffusion Barrier

Kyoung-Il Na, Won-Nyung Hur, Sung-Eun Boo, Jung‐Hee Lee

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Abstract

For a diffusion barrier against copper, tantalum nitride films have been deposited on $SiO_{2}$ by atomic layer deposition (ALD), using PEMAT(Pentakis(ethylmethylamino)tantalum) and $NH_{3}$ as precursors, Ar as purging gas. The deposition rate of TaN at substrate temperature $250^{\circ}C$ was about $0.67{\AA}$ per one cycle. The stability of TaN films as a Cu diffsion barrier was tested by thermal annealing for 30 minutes in $N_{2}$ ambient and characterized through XRD, sheet resistance, and C-V measurement(Cu( $1000{\AA}$ )/TaN( $50{\AA}$ )/ $SiO_{2}$ ( $2000{\AA}$ )/Si capacitor fabricated), which prove the TaN film maintains the barrier properties Cu below $400^{\circ}C$ .

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For a diffusion barrier against copper, tantalum nitride films have been deposited on $SiO_{2}$ by atomic layer deposition (ALD), using PEMAT(Pentakis(ethylmethylamino)tantalum) and $NH_{3}$ as precursors, Ar as purging gas. The deposition rate of TaN at substrate temperature $250^{\circ}C$ was about $0.67{\AA}$ per one cycle. The stability of TaN films as a Cu diffsion barrier was tested by thermal annealing for 30 minutes in $N_{2}$ ambient and characterized through XRD, sheet resistance, and C-V measurement(Cu( $1000{\AA}$ )/TaN( $50{\AA}$ )/ $SiO_{2}$ ( $2000{\AA}$ )/Si capacitor fabricated), which prove the TaN film maintains the barrier properties Cu below $400^{\circ}C$ .

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Available abstract

For a diffusion barrier against copper, tantalum nitride films have been deposited on $SiO_{2}$ by atomic layer deposition (ALD), using PEMAT(Pentakis(ethylmethylamino)tantalum) and $NH_{3}$ as precursors, Ar as purging gas. The deposition rate of TaN at substrate temperature $250^{\circ}C$ was about $0.67{\AA}$ per one cycle. The stability of TaN films as a Cu diffsion barrier was tested by thermal annealing for 30 minutes in $N_{2}$ ambient and characterized through XRD, sheet resistance, and C-V measurement(Cu( $1000{\AA}$ )/TaN( $50{\AA}$ )/ $SiO_{2}$ ( $2000{\AA}$ )/Si capacitor fabricated), which prove the TaN film maintains the barrier properties Cu below $400^{\circ}C$ .

Key concepts: Tantalum nitride, Diffusion barrier, Atomic layer deposition, Barrier layer, Annealing (glass), Tantalum, Copper, Materials science

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