Please use this identifier to cite or link to this item: http://hdl.handle.net/2289/6883
Title: Rapid formation and macroscopic self-assembly of liquid-crystalline, high-mobility, semiconducting Thienothiophene.
Authors: Pandey, Manish
Gowda, Ashwathanarayana
Nagamatsu, Shuichi
Kumar, Sandeep
+3 Co-authors
Issue Date: Mar-2018
Publisher: Wiley-VCH Verlag
Citation: Advanced materials Interfaces, 2018, Vol. 5, P 1700875
Abstract: A synergistic approach to enhance charge‐carrier transport in organic semiconductors along with facile solution processing and high performance is crucial for the advancement of organic electronics. The floating film transfer method (FTM) is used as a facile and cost‐effective method for the fabrication of large‐scale, uniform, highly oriented poly[2,5‐bis(3‐tetradecylthiophen‐2‐yl)thieno[3,2‐b]thiophene] (pBTTT C‐14) films under ambient conditions. Utilization of such oriented films as the active semiconducting layer in organic field‐effect transistors (OFETs) results in highly anisotropic charge‐carrier transport. Highly oriented, FTM‐processed pBTTT C‐14 thin films are characterized by polarized electronic absorption and Raman spectroscopy, atomic force microscopy, out‐of‐plane X‐ray diffraction, and grazing incident X‐ray diffraction (GIXD) measurements. The GIXD data indicate an edge‐on orientation, which is highly desirable for planar devices such as OFETs. OFETs built using the oriented films show a mobility anisotropy of 10 and the highest mobility is 1.24 cm2 V−1 s−1 along the backbone orientation, which is among the highest value reported for this class of materials using a similar device configuration.
Description: Restricted Access.
URI: http://hdl.handle.net/2289/6883
ISSN: 2196-7350 (online)
Alternative Location: http://dx.doi.org/10.1002/admi.201700875
Copyright: 2018 Wiley-VCH GmbH & Co.
Appears in Collections:Research Papers (SCM)

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