A study on the thermoelectric properties of chemical vapor deposited SiC films with temperature and diluent gases variation
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概要
- 論文の詳細を見る
Chemical vapor deposited (CVD) silicon carbide (SiC) provides many advantages over other materials due to its high thermal, chemical and mechanical stability at high temperature. For these reasons, CVD SiC has replaced Si in components for semiconductor process. For application of CVD SiC to semiconductor fabrication equipment, thermoelectric properties controls are important. Therefore, we have studied the effects of different diluent gases, deposition temperatures and microstructures of deposited SiC on change of thermoelectric properties. The electrical conductivity of SiC which used N2 diluent gas was larger than SiC deposited with H2 diluent gas. Electrical resistivity varied by an order of 102 for different diluent gases at the same deposition temperature, and Seebeck coefficient also depended on the gas used. Additionally, SiC deposited with H2 showed n-type semiconductor behavior while that deposited with N2 showed p-type characteristics.
- 公益社団法人 日本セラミックス協会の論文
- 2009-05-01
著者
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CHOI Doo
Department of Ceramic Engineering, Yonsei University
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Kim Jun
Department of Internal Medicine, Chonnam University Medical School
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Choi Yoo
Department Of Genetic Epidemiology Snp Genetics Inc.
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Kim Jung
Recearch And Development Center
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Choi Doo
Department Of Advanced Material Science And Engineering Yonsei University
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Choi Doo
Dep. Of Materials Sci. And Engineering Yonsei Univ.
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Kim Jun
Dep. Of Materials Sci. And Engineering Yonsei Univ.
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Kim Bae
Recearch And Development Center
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Choi Soon
Testing And Certification Division Korea Institute Of Ceramic Engineering And Technology
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Choi Yoo
Department Of Chemical Engineering Pohang University Of Science And Technology (postech)
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Kim Jun
Department Of Ceramic Engineering Yonsei University
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Kim Jun
Department Of Bioengineering University Of California Los Angeles
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KIM Jun
Department of Advanced Material Science and Engineering, Yonsei University
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Choi Yoo
Department of Advanced Material Science and Engineering, Yonsei University
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