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High-Performance Flexible Hybrid Field-Effect Transistors Based on Cellulose Fiber Paper

机译:基于纤维素纤维纸的高性能柔性混合型场效应晶体管

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In this letter, we report for the first time the use of a sheet of cellulose-fiber-based paper as the dielectric layer used in oxide-based semiconductor thin-film field-effect transistors (FETs). In this new approach, we are using the cellulose-fiber-based paper in an “interstrate” structure since the device is built on both sides of the cellulose sheet. Such hybrid FETs present excellent operating characteristics such as high channel saturation mobility $(≫ hbox{30} hbox{cm}^{2}/hbox{Vs})$, drain–source current on/off modulation ratio of approximately $ hbox{10}^{4}$, near-zero threshold voltage, enhancement n-type operation, and subthreshold gate voltage swing of 0.8 V/decade. The cellulose-fiber-based paper FETs'''' characteristics have been measured in air ambient conditions and present good stability, after two months of being processed. The obtained results outpace those of amorphous Si thin-film transistors (TFTs) and rival with the same oxide-based TFTs produced on either glass or crystalline silicon substrates. The compatibility of these devices with large-scale/large-area deposition techniques and low-cost substrates as well as their very low operating bias delineates this as a promising approach to attain high-performance disposable electronics like paper displays, smart labels, smart packaging, RFID, and point-of-care systems for self-analysis in bioapplications, among others.
机译:在这封信中,我们首次报告了将一张纤维素纤维基纸用作氧化物基半导体薄膜场效应晶体管(FET)中使用的介电层。在这种新方法中,由于该设备建在纤维素片的两面,因此我们将纤维素纤维基纸用于“内衬”结构。这样的混合FET具有出色的工作特性,例如高沟道饱和迁移率$ {hbox {30} hbox {cm} ^ {2} / hbox {Vs})$,漏源电流开/关调制比约为hbox { 10} ^ {4} $,接近零的阈值电压,增强的n型操作以及0.8V /十倍的亚阈值栅极电压摆幅。经过两个月的加工,已在空气环境条件下测量了纤维素纤维基纸FET的特性,并表现出良好的稳定性。所获得的结果超过了非晶硅薄膜晶体管(TFT)的结果,并且与在玻璃或晶体硅基板上生产的相同的基于氧化物的TFT竞争。这些设备与大规模/大面积沉积技术和低成本基板的兼容性以及极低的操作偏差将其描述为获得高性能一次性电子产品(如纸显示器,智能标签,智能包装)的一种有前途的方法,RFID以及用于生物应用中自我分析的即时医疗系统等。

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