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Electric Field-aided Selective Activation for Indium-Gallium-Zinc-Oxide Thin Film Transistors

机译:电场辅助氧化铟锌薄膜晶体管的选择性激活

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A new technique is proposed for the activation of low temperature amorphous InGaZnO thin film transistor (a-IGZO TFT) backplanes through application of a bias voltage and annealing at 130?°C simultaneously. In this 'electrical activation', the effects of annealing under bias are selectively focused in the channel region. Therefore, electrical activation can be an effective method for lower backplane processing temperatures from 280?°C to 130?°C. Devices fabricated with this method exhibit equivalent electrical properties to those of conventionally-fabricated samples. These results are analyzed electrically and thermodynamically using infrared microthermography. Various bias voltages are applied to the gate, source, and drain electrodes while samples are annealed at 130?°C for 1?hour. Without conventional high temperature annealing or electrical activation, current-voltage curves do not show transfer characteristics. However, electrically activated a-IGZO TFTs show superior electrical characteristics, comparable to the reference TFTs annealed at 280?°C for 1?hour. This effect is a result of the lower activation energy, and efficient transfer of electrical and thermal energy to a-IGZO TFTs. With this approach, superior low-temperature a-IGZO TFTs are fabricated successfully.
机译:提出了一种新技术,用于通过在同时在130℃下施加偏压和退火来激活低温非晶Ingazno薄膜晶体管(A-IGZO TFT)背板。在这种“电激活”中,在偏压下的退火效果选择性地聚焦在沟道区中。因此,电激活可以是较低底板加工温度的有效方法,从280°C到130°C。采用该方法制造的装置对常规制造的样品的等效电性能表现出相同的电性能。使用红外微液电动和热力学地分析这些结果。将各种偏置电压施加到栅极,源极和漏电极,而样品在130Ω℃退火1?小时。在没有常规的高温退火或电激活的情况下,电流 - 电压曲线不显示转移特性。然而,电活化A-IGZO TFT显示出卓越的电气特性,与在280Ω℃下退火的参考TFT为1?小时。这种效果是激活能量较低,有效地将电气和热能转移到A-IGZO TFT。通过这种方法,优异的低温A-IGZO TFT成功制造。

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