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Low-voltage High-performance Organic Field-Effect Transistors Based on 2D Crystalline Molecular Semiconductors

机译:基于二维晶体分子半导体的低压高性能有机场效应晶体管

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摘要

Two dimensional (2D) molecular crystals have attracted considerable attention because of their promising potential in electrical device applications, such as high-performance field-effect transistors (FETs). However, such devices demand high voltages, thereby considerably increasing power consumption. This study demonstrates the fabrication of organic FETs based on 2D crystalline films as semiconducting channels. The application of high-κ oxide dielectrics allows the transistors run under a low operating voltage (−4 V). The devices exhibited a high electrical performance with a carrier mobility up to 9.8 cm2 V−1 s−1. Further results show that the AlOx layer is beneficial to the charge transport at the conducting channels of FETs. Thus, the device strategy presented in this work is favorable for 2D molecular crystal-based transistors that can operate under low voltages.
机译:二维(2D)分子晶体由于在诸如高性能场效应晶体管(FET)等电子设备应用中具有广阔的发展前景而备受关注。但是,这样的设备需要高电压,从而大大增加了功耗。这项研究证明了基于2D晶体膜作为半导体通道的有机FET的制造。高κ氧化物电介质的应用允许晶体管在低工作电压(-4 V)下运行。这些器件具有很高的电性能,载流子迁移率高达9.8 cm 2 V -1 s -1 。进一步的结果表明,AlOx层有利于FET导电沟道处的电荷传输。因此,这项工作中提出的器件策略对于可以在低电压下运行的基于2D分子晶体的晶体管是有利的。

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