Applied Physics Letters · 2009 · 102 citations · 6 references
Materials ScienceSemiconductor TechnologyElectrical EngineeringElectronic DevicesEngineeringElectronic MaterialsOxide ElectronicsSinx Gate InsulatorApplied PhysicsTrap DensityGallium OxideBias StabilityThin Film Process TechnologyThin FilmsO2 Plasma TreatmentO2 Plasma-treated InsulatorSemiconductor DeviceThin-film Transistors
The effects of an O2 plasma-treated SiNX-based insulator on the interfacial property and the device performances of amorphous indium gallium zinc oxide thin-film transistors (a-IGZO TFTs) were investigated. We tried to improve the interfacial characteristics by reducing the trap density between the SiNX gate insulator and a-IGZO channel by the O2 plasma treatment. The plasma treated-device performances were remarkably improved. The drastic improvements obtained for the O2 plasma-treated a-IGZO TFTs included excellent bias stability as well as a high field effect mobility (μFE) of 19.4 cm2/V s, an on/off current (ION/IOFF) of 108, and a subthreshold value (S) of 0.5 V/decade.
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Alain Rolland, J. Richard, Jean‐Paul Kleider et al. · Journal of The Electrochemical Society · 1993 · 259 citations
Engineering, Semiconductor Materials, Amorphous Silicon Transistors +18
Chun-sung Chiang, Jerzy Kanicki, Kazushige Takechi · Japanese Journal of Applied Physics · 1998 · 116 citations
Engineering, Active-matrix Liquid-crystal Displays, Integrated Circuits +18