Effect of annealing on the optical and chemical bonding properties of hydrogenated amorphous carbon and hydrogenated amorphous carbon nitride thin films

Hydrogenated amorphous carbon (a-C:H) and hydrogenated amorphous carbon nitride (a-CN(x):H) films were prepared in a custom-built radio-frequency plasma-enhanced chemical vapor deposition (RF-PECVD) system with a parallel-plate configuration. Pure methane and a gas mixture of methane and nitrogen we...

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Bibliographic Details
Main Authors: Ritikos, Richard, Chow, Chee Siong, Gani, Siti Meriam Ab, Muhamad, Muhamad Rasat, Rahman, Saadah Abdul
Format: Article
Published: IOP Publishing 2009
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Online Access:http://eprints.um.edu.my/7332/
https://doi.org/10.1143/JJAP.48.101301
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Summary:Hydrogenated amorphous carbon (a-C:H) and hydrogenated amorphous carbon nitride (a-CN(x):H) films were prepared in a custom-built radio-frequency plasma-enhanced chemical vapor deposition (RF-PECVD) system with a parallel-plate configuration. Pure methane and a gas mixture of methane and nitrogen were used as gas sources to obtain these films. The films were characterized using Fourier transform infrared and optical transmission spectroscopy techniques. The incorporation of nitrogen and the effect of annealing (100-500 degrees C) on the film properties were studied. The films were determined to be thermally stable up to 300 degrees C. Upon annealing above 300 degrees C, the thickness and refractive index of both a-C:H and a-CN(x):H films increase while the optical energy gap E(04) decreases. These effects were more pronounced in a-CN(x):H. From the IR spectra, these changes are considered to be due to the decreases in nitrogen and hydrogen concentrations in the films which result in their structural modification.