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Fully Printed Zinc Oxide Electrolyte-Gated Transistors on Paper

机译:纸上完全印刷的氧化锌电解质门控晶体管

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摘要

Fully printed and flexible inorganic electrolyte gated transistors (EGTs) on paper with a channel layer based on an interconnected zinc oxide (ZnO) nanoparticle matrix are reported in this work. The required rheological properties and good layer formation after printing are obtained using an eco-friendly binder such as ethyl cellulose (EC) to disperse the ZnO nanoparticles. Fully printed devices on glass substrates using a composite solid polymer electrolyte as gate dielectric exhibit saturation mobility above 5 cm2 V−1 s−1 after annealing at 350 °C. Proper optimization of the nanoparticle content in the ink allows for the formation of a ZnO channel layer at a maximum annealing temperature of 150 °C, compatible with paper substrates. These devices show low operation voltages, with a subthreshold slope of 0.21 V dec−1, a turn on voltage of 1.90 V, a saturation mobility of 0.07 cm2 V−1 s−1 and an Ion/Ioff ratio of more than three orders of magnitude.
机译:在这项工作中报道了在纸上具有基于互连氧化锌(ZnO)纳米颗粒基质的沟道层的全印刷和柔性无机电解质门控晶体管(EGT)。使用生态友好型粘合剂(例如乙基纤维素(EC))分散ZnO纳米颗粒,可以获得所需的流变性能和印刷后良好的成膜性。在使用复合固体聚合物电解质作为栅极电介质的玻璃基板上的完全印刷器件,在经过5 cm 2 V -1 s -1 之后,其饱和迁移率超过5 cm在350°C下退火。墨水中纳米粒子含量的适当优化可以在最大退火温度150°C的条件下形成与纸张基材兼容的ZnO通道层。这些器件显示出低工作电压,亚阈值斜率为0.21 V dec -1 ,开启电压为1.90 V,饱和迁移率为0.07 cm 2 V -1 s -1 且Ion / Ioff比超过三个数量级。

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