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Facile fabrication of electrolyte-gated single-crystalline cuprous oxide nanowire field-effect transistors

机译:电解质门控单晶氧化亚铜纳米线场效应晶体管的简便制造

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Oxide semiconductors are considered to be one of the forefront candidates for the new generation, high-performance electronics. However, one of the major limitations for oxide electronics is the scarcity of an equally good hole-conducting semiconductor, which can provide identical performance for the p-type metal oxide semiconductor field-effect transistors as compared to their electron conducting counterparts. In this quest, here we present a bulk synthesis method for single crystalline cuprous oxide (Cu2O) nanowires, their chemical and morphological characterization and suitability as active channel material in electrolyte-gated, low-power, field-effect transistors (FETs) for portable and flexible logic circuits. The bulk synthesis method used in the present study includes two steps: namely hydrothermal synthesis of the nanowires and the removal of the surface organic contaminants. The surface treated nanowires are then dispersed on a receiver substrate where the passive electrodes are structured, followed by printing of a composite solid polymer electrolyte (CSPE), chosen as the gate insulator. The characteristic electrical properties of individual nanowire FETs are found to be quite interesting including accumulation-mode operation and field-effect mobility of 0.15 cm(2) V-1 s(-1).
机译:氧化物半导体被认为是新一代高性能电子产品的最前沿候选人之一。然而,氧化物电子学的主要限制之一是缺乏同等良好的空穴传导半导体,与电子传导类似物相比,它可以为p型金属氧化物半导体场效应晶体管提供相同的性能。在此任务中,我们在此提出了一种用于单晶氧化亚铜(Cu2O)纳米线的整体合成方法,其化学和形态学表征以及适用于便携式便携式电解质门控,低功率,场效应晶体管(FET)中的有源沟道材料和灵活的逻辑电路。本研究中使用的本体合成方法包括两个步骤:即纳米线的水热合成和表面有机污染物的去除。然后将经过表面处理的纳米线分散在接收器基板上,在接收器基板上构造无源电极,然后印刷被选作栅极绝缘体的复合固体聚合物电解质(CSPE)。发现单个纳米线FET的特征电特性非常有趣,包括累积模式操作和0.15 cm(2)V-1 s(-1)的场效应迁移率。

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