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Tuning polarity and improving charge transport in organic semiconductors

Author(s)
Oh, Joon HakHan, A-ReumYu, HojeongLee, Eun KwangJang, Moon Jeong
Issued Date
2013
DOI
10.1117/12.2023157
URI
https://scholarworks.unist.ac.kr/handle/201301/66814
Citation
Organic Field-Effect Transistors XII; and Organic Semiconductors in Sensors and Bioelectronics VI, v.8831
Abstract
Although state-of-the-art ambipolar polymer semiconductors have been extensively reported in recent years, highperformance ambipolar polymers with tunable dominant polarity are still required to realize on-demand, target-specific, high-performance organic circuitry. Herein, dithienyl-diketopyrrolopyrrole (TDPP)-based polymer semiconductors with engineered side-chains have been synthesized, characterized and employed in ambipolar organic field-effect transistors, in order to achieve controllable and improved electrical properties. Thermally removable tert-butoxycarbonyl (t-BOC) groups and hybrid siloxane-solubilizing groups are introduced as the solubilizing groups, and they are found to enable the tunable dominant polarity and the enhanced ambipolar performance, respectively. Such outstanding performance based on our molecular design strategies makes these ambipolar polymer semiconductors highly promising for low-cost, large-area, and flexible electronics.
Publisher
SPIE
ISBN
978-081949681-2
ISSN
0277-786X

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