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高性能碳纳米管互补电子器件和超薄塑料箔上的集成传感器系统。

High-Performance Carbon Nanotube Complementary Electronics and Integrated Sensor Systems on Ultrathin Plastic Foil.

机构信息

Key Laboratory for the Physics and Chemistry of Nanodevices and Department of Electronics , Peking University , Beijing 100871 , China.

出版信息

ACS Nano. 2018 Mar 27;12(3):2773-2779. doi: 10.1021/acsnano.7b09145. Epub 2018 Feb 1.

Abstract

The longtime vacancy of high-performance complementary metal-oxide-semiconductor (CMOS) technology on plastics is a non-negligible obstacle to the applications of flexible electronics with advanced functions, such as continuous health monitoring with in situ signal processing and wireless communication capabilities, in which high speed, low power consumption, and complex functionality are desired for integrated circuits (ICs). Here, we report the implementation of carbon nanotube (CNT)-based high-performance CMOS technology and its application for signal processing in an integrated sensor system for human body monitoring on ultrathin plastic foil with a thickness of 2.5 μm. The performances of both the p- and n-type CNT field-effect transistors (FETs) are excellent and symmetric on plastic foil with a low operation voltage of 2 V: width-normalized transconductances ( g/ W) as high as 4.69 μS/μm and 5.45 μS/μm, width-normalized on-state currents reaching 5.85 μA/μm and 6.05 μA/μm, and mobilities up to 80.26 cm·V·s and 97.09 cm·V·s, respectively, together with a current on/off ratio of approximately 10. The devices were mechanically robust, withstanding a curvature radius down to 124 μm. Utilizing these transistors, various high-performance CMOS digital ICs with rail-to-rail output and a ring oscillator on plastics with an oscillation frequency of 5 MHz were demonstrated. Furthermore, an ultrathin skin-mounted humidity sensor system with in situ frequency modulation signal processing capability was realized to monitor human body sweating.

摘要

长期以来,塑料上缺乏高性能互补金属氧化物半导体(CMOS)技术,这是先进功能柔性电子应用的一个不可忽视的障碍,例如具有原位信号处理和无线通信功能的连续健康监测,其中集成电路(IC)需要高速、低功耗和复杂功能。在这里,我们报告了基于碳纳米管(CNT)的高性能 CMOS 技术的实现及其在人体监测用集成传感器系统中的信号处理应用,该系统采用厚度为 2.5μm 的超薄塑料箔。在塑料箔上,p 型和 n 型 CNT 场效应晶体管(FET)的性能都非常出色且对称,工作电压低至 2V:宽化跨导(g/W)高达 4.69μS/μm 和 5.45μS/μm,宽化导通电流分别达到 5.85μA/μm 和 6.05μA/μm,迁移率高达 80.26cm·V·s 和 97.09cm·V·s,电流开关比约为 10。这些器件具有机械鲁棒性,能够承受曲率半径低至 124μm 的弯曲。利用这些晶体管,在塑料上实现了具有轨到轨输出的各种高性能 CMOS 数字集成电路,以及振荡频率为 5MHz 的环形振荡器。此外,还实现了具有原位频率调制信号处理能力的超薄皮肤贴附式湿度传感器系统,以监测人体出汗情况。

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