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Cited 104 time in webofscience Cited 109 time in scopus
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Three-Dimensional, Inkjet-Printed Organic Transistors and Integrated Circuits with 100% Yield, High-Uniformity and Long-Term Stability SCIE SCOPUS

Title
Three-Dimensional, Inkjet-Printed Organic Transistors and Integrated Circuits with 100% Yield, High-Uniformity and Long-Term Stability
Authors
Jimin KwonYasunori TakedaKenjiro FukudaCho KilwonShizuo TokitoJung, S
Date Issued
2016-11
Publisher
American Chemical Society
Abstract
In this paper, we demonstrate three-dimensional (3D) integrated circuits (ICs) based on a 3D complementary organic field-effect transistor (3D-COFET). The transistor-on-transistor structure was achieved by vertically stacking a p-type OFET over an n-type OFET with a shared gate joining the two transistors, effectively halving the footprint of printed transistors. All the functional layers including organic semiconductors, source/drain/gate electrodes, and interconnection paths were fully inkjet-printed except a parylene dielectric which was deposited by chemical vapor deposition. An array of printed 3D-COFETs and their inverter logic gates comprising over 100 transistors showed 100% yield, and the uniformity and long-term stability of the device were also investigated. A full-adder circuit, the most basic computing unit, has been successfully demonstrated using nine NAND gates based on the 3D structure. The present study fulfills the essential requirements for the fabrication of organic printed complex ICs (increased transistor density, 100% yield, high uniformity, and long-term stability), and the findings can be applied to realize more complex digital/analogue ICs and intelligent devices.
URI
https://oasis.postech.ac.kr/handle/2014.oak/37874
DOI
10.1021/ACSNANO.6B06041
ISSN
1936-0851
Article Type
Article
Citation
ACS NANO, vol. 10, no. 11, page. 10324 - 10330, 2016-11
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