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http://dx.doi.org/10.3807/KJOP.2002.13.5.455

Transport and optical properties of transparent conducting oxide In2O3:Zn  

노경헌 (연세대학교 물리학과)
최문구 (연세대학교 물리학과)
박승한 (연세대학교 물리학과)
주홍렬 (연세대학교 물리학과)
정창오 (삼성전자 반도체 AMLCD 사업부)
정규하 (삼성전자 반도체 AMLCD 사업부)
박장우 (한밭대학교 공업화학과)
Publication Information
Korean Journal of Optics and Photonics / v.13, no.5, 2002 , pp. 455-459 More about this Journal
Abstract
The transport and optical properties of $In_2O_3$:Zn(IZO) thin films grown by DC magnetron sputtering deposition have been studied. The deposition temperatures ($T_s$) were varied from room temperature to $400^{\circ}C$ in $50^{\circ}C$ steps. The IZO films are an amorphous phase for $T_s$<$300^{\circ}C$ and polycrystalline phase for $350^{\circ}C$$T_s$. In contrast to ordinary films, amorphous IZO films have lower resistivity and higher optical transmittance than polycrystalline IZO films. The resistivity of amorphous IZO was in the range of 0.29~0.4 m$\Omega$cm and that of polycrystalline IZO was in the range of 1~4 m$\Omega$cm. The carrier type for IZO film was found to be n-type, and the carrier density, was $3~5{\times}10^{20}/cm^3$. The Hall mobility, $({\mu}_H)$, was 20~$50\textrm{cm}^2$/V.sec. The predominant scattering mechanisms in both amorphous and polycrystalline IZO films were believed to be ionized impurity scattering and lattice scattering. The visible transmittance of the IZO films, which decreases with an increase of TS, was above 80%.
Keywords
transparent conducting oxides; transport property; armorphous TCO; optical transmittance;
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