Fully Transparent Pixel Circuits Driven by Random Network Carbon Nanotube Transistor Circuitry

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초록

Optically transparent and mechanically flexible thin-film transistors have recently attracted attention for next generation transparent display technologies. Driving and switching transistors for transparent displays have challenging requirements such as high optical transparency, large-scale integration, suitable drive current (I-on) in the microampere range, high on/off current ratio (I-on/I-off), high field-effect mobility, and uniform threshold voltage (V-th). In this study, we demonstrate fully transparent high-performance and high-yield thin-film transistors based on random growth of a single-walled carbon nanotube (SWNT) network that are easy to fabricate. High-performance SWNT-TFTs exhibit optical transmission of 80% in visible wavelength, I-on/I-off higher than 10(3), and a high yield with reproducible electrical characteristics.

키워드

carbon nanotubetransparentthin-film transistornetwork nanotubedriving circuitpixelOLEDTHIN-FILM TRANSISTORSELECTRODESARRAYS
제목
Fully Transparent Pixel Circuits Driven by Random Network Carbon Nanotube Transistor Circuitry
저자
Kim, SunkookKim, SeongminPark, JongsunJu, SanghyunMohammadi, Saeed
DOI
10.1021/nn1006094
발행일
2010-06
유형
Article
저널명
ACS Nano
4
6
페이지
2994 ~ 2998