Artículo
Functionalized dithienylthiazolo[5, 4-d]thiazoles for solution-processable organic field-effect transistors
Van Mierloo, Sarah; Vasseur, Karolien; Van Den Brande, Niko; Boyukbayram, Ayse E.; Ruttens, Bart; Rodríguez, Silvio David
; Botek, Edith; Liégeois, Vincent; D'Haen, Jan; Adriaensens, Peter J.; Heremans, Paul; Champagne, Benoît; Van Assche, Guy; Lutsen, Laurence; Vanderzande, Dirk J.; Maes, Wouter
Fecha de publicación:
06/2012
Editorial:
Wiley
Revista:
ChemplusChem
ISSN:
2192-6506
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
A series of 5′-aryl-substituted 2, 5-bis(3′-hexylthiophen- 2′-yl)thiazolo[5, 4-d]thiazole derivatives was synthesized and these expanded semiconductors were investigated as active materials for solution-processable organic field-effect transistors. Field-effect mobilities of up to 10 -3 cm 2V -1s -1 were obtained, representing the first reasonable FET behavior for highly soluble thiazolo[5, 4-d]thiazole-based small organic compounds suitable for printable electronics. Thermal and electrooptical material properties were studied by thermogravimetric analysis, differential scanning calorimetry, cyclic voltammetry, and UV/Vis spectroscopy. Trends in thermal and optical data were supported by (time-dependent) density functional theory calculations. Additional X-ray diffraction, atomic force microscopy, and scanning electron microscopy studies provided insight in the relationship between the molecular structures, film morphologies, and FET performances. The fibrillar microcrystalline structure observed for the best-performing thienyl-substituted material was linked to the high mobility.
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Articulos(OCA CIUDAD UNIVERSITARIA)
Articulos de OFICINA DE COORDINACION ADMINISTRATIVA CIUDAD UNIVERSITARIA
Articulos de OFICINA DE COORDINACION ADMINISTRATIVA CIUDAD UNIVERSITARIA
Citación
Van Mierloo, Sarah; Vasseur, Karolien; Van Den Brande, Niko; Boyukbayram, Ayse E.; Ruttens, Bart; et al.; Functionalized dithienylthiazolo[5, 4-d]thiazoles for solution-processable organic field-effect transistors; Wiley; ChemplusChem; 77; 10; 6-2012; 923-930
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