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基于具有印刷半导体碳纳米管和顶部电极的顶栅薄膜晶体管的柔性逻辑电路。

Flexible logic circuits based on top-gate thin film transistors with printed semiconductor carbon nanotubes and top electrodes.

作者信息

Xu Weiwei, Liu Zhen, Zhao Jianwen, Xu Wenya, Gu Weibing, Zhang Xiang, Qian Long, Cui Zheng

机构信息

Printable Electronics Research Centre, Suzhou Institute of Nanotech and nano-bionics, Chinese Academy of Sciences, No. 398 Ruoshui Road, Suzhou Industrial Park, Suzhou, Jiangsu Province 215123, PR China.

出版信息

Nanoscale. 2014 Dec 21;6(24):14891-7. doi: 10.1039/c4nr05471g. Epub 2014 Nov 3.

Abstract

In this report printed thin film transistors and logic circuits on flexible substrates are reported. The top-gate thin film transistors were made of the sorted semiconducting single-walled carbon nanotubes (sc-SWCNTs) ink as channel material and printed silver lines as top electrodes and interconnect. 5 nm HfOx thin films pre-deposited on PET substrates by atomic layer deposition (ALD) act as the adhesion layers to significantly improve the immobilization efficiency of sc-SWCNTs and environmental stability. The immobilization mechanism was investigated in detail. The flexible partially-printed top-gate SWCNT TFTs display ambipolar characteristics with slightly strong p-type when using 50 nm HfO(x) thin films as dielectric layer, as well as the encapsulation layer by atomic layer deposition (ALD) at 120 °C. The hole mobility, on/off ratio and subthreshold swing (SS) are ∼ 46.2 cm(2) V(-1) s(-1), 10(5) and 109 mV per decade, respectively. Furthermore, partially-printed TFTs show small hysteresis, low operating voltage (2 V) and high stability in air. Flexible partially-printed inverters show good performance with voltage gain up to 33 with 1.25 V supply voltage, and can work at 10 kHz. The frequency of flexible partially-printed five-stage ring oscillators can reach 1.7 kHz at supply voltages of 2 V with per stage delay times of 58.8 μs. This work paves a way to achieve printed SWCNT advanced logic circuits and systems on flexible substrates.

摘要

在本报告中,报道了在柔性衬底上的印刷薄膜晶体管和逻辑电路。顶栅薄膜晶体管由经过分选的半导体单壁碳纳米管(sc-SWCNTs)墨水作为沟道材料制成,印刷银线作为顶电极和互连。通过原子层沉积(ALD)预先沉积在PET衬底上的5 nm HfOx薄膜用作粘附层,以显著提高sc-SWCNTs的固定效率和环境稳定性。详细研究了固定机制。当使用50 nm HfO(x)薄膜作为介电层以及通过120°C的原子层沉积(ALD)作为封装层时,柔性部分印刷顶栅SWCNT TFT表现出双极性特性,p型略强。空穴迁移率、开/关比和亚阈值摆幅(SS)分别约为46.2 cm(2) V(-1) s(-1)、10(5)和每十倍频程109 mV。此外,部分印刷的TFT显示出小的滞后、低工作电压(2 V)和在空气中的高稳定性。柔性部分印刷的反相器在1.25 V电源电压下表现出良好的性能,电压增益高达33,并且可以在10 kHz下工作。在2 V电源电压下,柔性部分印刷的五级环形振荡器的频率可以达到1.7 kHz,每级延迟时间为58.8 μs。这项工作为在柔性衬底上实现印刷SWCNT先进逻辑电路和系统铺平了道路。

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