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Journal article

Stable Solution-Processed High-Mobility Substituted Pentacene Semiconductors

Abstract

The synthesis, photooxidative stability, and field-effect transistor properties of a series of 6,13-diethynyl-substituted pentacene derivatives are described. Substitution with appropriate solubilizing ethynyl functions at the C-6/C-13 positions of pentacene, which promote extended π-electron delocalization from the pentacene nucleus, leads to phenomenal enhancement in both solubility and photooxidative stability. This has enabled fabrication of a stable, solution-processed thin-film semiconductor under ambient conditions for high-mobility organic thin-film transistors. Specifically, a solution-processed 6,13-bis(4-pentylphenylethynyl)pentacene semiconductor has yielded mobility as high as 0.52 cm2 V-1 s-1 in OTFTs.

Authors

Li Y; Wu Y; Liu P; Prostran Z; Gardner S; Ong BS

Journal

Chemistry of Materials, Vol. 19, No. 3, pp. 418–423

Publisher

American Chemical Society (ACS)

Publication Date

February 1, 2007

DOI

10.1021/cm062378n

ISSN

0897-4756

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