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"Amorphous oxide semiconductor"

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"Amorphous oxide semiconductor"

Investigation on Electrical Property of Amorphous Oxide SiZnSnO Semiconducting Thin Films
Jae Min Byun, Sang Yeol Lee
J Korean Inst Electr Electron Mater Eng 2019;32(4):272-275.   Published online July 1, 2019
DOI: https://doi.org/10.4313/JKEM.2019.32.4.272
We investigated the electrical characteristics of amorphous silicon-zinc-tin-oxide (a-SZTO) thin films deposited by RF-magnetron sputtering at room temperature depending on the deposition time. We fabricated a thin film transistor (TFT) with a bottom gate structure and various channel thicknesses. With increasing channel thickness, the threshold voltage shifted negatively from -0.44 V to -2.18 V, the on current (Ion) and field effect mobility (μFE) increased because of increasing carrier concentration. The a-SZTO film was fabricated and analyzed in terms of the contact resistance and channel resistance. In this study, the transmission line method (TLM) was adopted and investigated. With increasing channel thickness, the contact resistance and sheet resistance both decreased.
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Improved Stability Sputtered IZO Thin Film Transistor Using Solution Processed Al2O3 Diffusion Layer
Namgyung Hwang, Yooseong Lim, Jeong Seok Lee, Sehyeong Lee, Moonsuk Yi
J Korean Inst Electr Electron Mater Eng 2018;31(5):273-277.   Published online July 1, 2018
DOI: https://doi.org/10.4313/JKEM.2018.31.5.273
This research introduces the sputtered IZO thin film transistor (TFT) with solution-processed Al2O3 diffusion layer. IZO is one of the most commonly used amorphous oxide semiconductor (AOS) TFT. However, most AOS TFTs have many defects that degrade performance. Especially oxygen vacancy in the active layer. In previous research, aluminum was used as a carrier suppressor by binding the oxygen vacancy and making a strong bond with oxygen atoms. In this paper, we use a solution-processed Al2O3 diffusion layer to fabricate stable IZO TFTs. A double-layer solution-processed Al2O3-sputtered IZO TFT showed better performance and stability, compared to normal sputtered IZO TFT.
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Regular Paper Characterization of Amorphous In-Si-O Multilayer for Low Emissivity Applications
Young Seong Lee, Sang Yeol Lee
J Korean Inst Electr Electron Mater Eng 2014;27(8):483-485.   Published online August 1, 2014
DOI: https://doi.org/10.4313/JKEM.2014.27.8.483
Transparent amorphous In-Si-O (ISO)/Ag/In-Si-O (ISO) has been reported for low emissivity(low-e) applications. Effective Si doping into the In2O3 matrix led to a completely amorphous ISO film aswell as a low resistivity and a high optical transmittance. The optical and electrical performances wereexamined by measuring transmittance with a UV-VIS spectrophotometer and resistivity with a Hall effectmeasurement. Consequently, low-e glass with ISO/Ag/ISO showed a high transparency in the visibleregion and low emissivity in the infrared region, indicating that ISO is a promising amorphoustransparent electrode for low-e glass.
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Regular Paper : Semiconductor ; Interface State Control of Amorphous InGaZnO Thin Film Transistor by Surface Treatment of Gate Insulator
Bo Sul Kim, Do Hyung Kim, Sang Yeol Lee
J Korean Inst Electr Electron Mater Eng 2011;24(9):693-696.   Published online September 1, 2011
DOI: https://doi.org/10.4313/JKEM.2011.24.9.693
Recently, amorphous oxide semiconductors (AOSs) based thin-film transistors (TFTs) have received considerable attention for application in the next generation displays industry. The research trends of AOSs based TFTs investigation have focused on the high device performance. The electrical properties of the TFTs are influenced by trap density. In particular, the threshold voltage (Vth) and subthreshold swing (SS) essentially depend on the semiconductor/gate-insulator interface trap. In this article, we investigated the effects of Ar plasma-treated SiO2 insulator on the interfacial property and the device performances of amorphous indium gallium zinc oxide (a-IGZO) TFTs. We report on the improvement in interfacial characteristics between a-IGZO channel layer and gate insulator depending on Ar power in plasma process, since the change of treatment power could result in different plasma damage on the interface.
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