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High-Performance Homojunction a-IGZO TFTs With Selectively Defined Low-Resistive a-IGZO Source/Drain Electrodes

机译:具有选择性定义的低电阻a-IGZO源/漏电极的高性能同质结a-IGZO TFT

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We report high-performance homojunction amorphous-indium–gallium–zinc-oxide (a-IGZO) thin-film transistors (TFTs) with low-resistive a-IGZO source/drain (S/D) electrodes. The a-IGZO S/D electrodes are selectively treated with high-power NF plasma, which reduces their resistivity from to cm. X-ray photoelectron spectroscopy indicates an increase in weakly bonded oxygen and a substantial amount of indium–fluorine and zinc–fluorine bonds at the a-IGZO top surface (extending to nm into the bulk) after plasma treatment. Temperature-dependent conductivity measurements show metallic behavior of the a-IGZO after treatment. It is concluded that fluorine atoms substitute for oxygen atoms—generating free electrons in the process and/or occupy oxygen vacancy sites—eliminating electron trap sites. As a result, the homojunction TFTs show good ON-state characteristics with typical field-effect mobility, subthreshold gate-voltage swing, and turn-ON voltage of 19 ± 1 cm, 178 ± 30 mV/decade, and −3.2 ± 1.5 V, respectively. Good stability at high temperature and under bias and light stress are also exhibited by the homojunction TFTs, verifying a stable doping effect by the NF plasma treatment.
机译:我们报告了具有低电阻a-IGZO源/漏(S / D)电极的高性能同质结非晶铟-镓-氧化锌(a-IGZO)薄膜晶体管(TFT)。用大功率NF等离子体选择性处理a-IGZO S / D电极,从而将其电阻率从降低到。 X射线光电子能谱表明,经过等离子处理后,a-IGZO上表面的弱键合氧增加,并且大量的铟-氟和锌-氟键(延伸到整个纳米)。温度相关的电导率测量结果显示了处理后a-IGZO的金属性能。结论是,氟原子替代了氧原子-在此过程中生成自由电子和/或占据了氧空位-消除了电子陷阱位点。结果,同质结TFT表现出良好的导通状态特性,具有典型的场效应迁移率,亚阈值栅极电压摆幅以及19±1 cm,178±30 mV / decade和-3.2±1.5 V的导通电压, 分别。同质结TFT在高温下以及在偏压和光应力下也表现出良好的稳定性,从而通过NF等离子体处理证明了稳定的掺杂效果。

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