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Wafer-scale, layer-controlled organic single crystals for high-speed circuit operation

机译:晶圆级,层控制的有机单晶,用于高速电路操作

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Two-dimensional (2D) layered semiconductors are a novel class of functional materials that are an ideal platform for electronic applications, where the whole electronic states are directly modified by external stimuli adjacent to their electronic channels. Scale-up of the areal coverage while maintaining homogeneous single crystals has been the relevant challenge. We demonstrate that wafer-size single crystals composed of an organic semiconductor bimolecular layer with an excellent mobility of 10 cm2 V?1 s?1 can be successfully formed via a simple one-shot solution process. The well-controlled process to achieve organic single crystals composed of minimum molecular units realizes unprecedented low contact resistance and results in high-speed transistor operation of 20 MHz, which is twice as high as the common frequency used in near-field wireless communication. The capability of the solution process for scale-up coverage of high-mobility organic semiconductors opens up the way for novel 2D nanomaterials to realize products with large-scale integrated circuits on film-based devices.
机译:二维(2D)分层半导体是一类新颖的功能材料,是电子应用的理想平台,在该应用中,整个电子状态直接由与其电子通道相邻的外部刺激来修改。在保持均质单晶的同时扩大面积覆盖率一直是相关的挑战。我们证明了由具有10 cm 2 V ?1 s ?1 极好的迁移率的有机半导体双分子层组成的晶片尺寸的单晶一个简单的一站式解决方案就可以成功地形成。精心控制的过程可实现由最小分子单元组成的有机单晶,实现了前所未有的低接触电阻,并导致20 MHz的高速晶体管工作,这是近场无线通信中常用频率的两倍。解决方案的能力可用于高迁移率有机半导体的按比例覆盖,从而为新型2D纳米材料开辟了在薄膜器件上实现具有大规模集成电路的产品的途径。

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