Solution processable PEDOT: PSS based hybrid electrodes for organic field effect transistors
- Authors
- Sanyoto, Bernardi; Kim, Soyeon; Park, Won-Tae; Xu, Yong; Kim, Jung-Hyun; Lim, Jong-Choo; Noh, Yong-Young
- Issue Date
- Oct-2016
- Publisher
- ELSEVIER
- Keywords
- PEDOT: PSS; Silver nanowire; Single wall carbon nanotube; Organic field effect transistors; Spray printing
- Citation
- ORGANIC ELECTRONICS, v.37, pp 352 - 357
- Pages
- 6
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- ORGANIC ELECTRONICS
- Volume
- 37
- Start Page
- 352
- End Page
- 357
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/14976
- DOI
- 10.1016/j.orgel.2016.07.015
- ISSN
- 1566-1199
1878-5530
- Abstract
- We report high performance solution processed conductive inks used as contact electrodes for printed organic field effect transistors (OFETs). Poly(3,4-ethylenedioxythiophene): polystyrene sulfonate (PEDOT: PSS) electrodes show highly improved very low sheet resistance of 65.8 +/- 6.5 Omega/square (Omega/square) by addition of dimethyl sulfoxide (DMSO) and post treatment with methanol (MeOH) solvent. Sheet resistance was further improved to 33.8 +/- 8.6 Omega/square by blending silver nanowire (AgNW) with DMSO doped PEDOT: PSS. Printed OFETs with state of the art diketopyrrolopyrrole-thieno[ 3,2-b] thiophene (DPPT-TT) semiconducting polymer were demonstrated with various solution processable conductive inks, including bare, MeOH treated PEDOT: PSS, single wall carbon nanotubes, and hybrid PEDOT: PSS-AgNW, as the source and drain (S/D) electrode by spray printing using a metal shadow mask. The highest field effect mobility, 0.49 +/- 0.03 cm(2) V-1 s(-1) for DPPT-TT OFETs, was obtained using blended AgNW with DMSO doped PEDOT: PSS S/D electrode. (C) 2016 Elsevier B.V. All rights reserved.
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Collections - College of Engineering > Department of Chemical and Biochemical Engineering > 1. Journal Articles

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