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The influence of alkyl group regiochemistry and backbone fluorination on the packing and transistor performance of N-cyanoimine functionalised indacenodithiophenes

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Title: The influence of alkyl group regiochemistry and backbone fluorination on the packing and transistor performance of N-cyanoimine functionalised indacenodithiophenes
Authors: Hodsden, T
Thorley, KJ
Basu, A
White, AJP
Wang, C
Mitchell, W
Glocklhofer, F
Anthopoulos, TD
Heeney, M
Item Type: Journal Article
Abstract: The synthesis of two novel n-type molecular organic semiconductors based on a fluorinated indacenodithiophene core in combination with an electron withdrawing N-cyanoimine group is reported, and the influence of the regiochemistry of the solubilizing sidechain is investigated. The N-cyanoimine is confirmed to be a strongly electron accepting group, which in combination with the core fluorination resulted in high electron affinities for both materials. Single crystal analysis demonstrated that whilst both materials arrange in ordered slipped stacks with close π–π stacking distances (∼3.40 Å), significant differences in electron transfer integrals for the two regioisomers were observed, relating to differences in relative molecular displacement along the π-stacking direction. Organic thin-film transistors fabricated via blade-coating displayed electron mobility up to 0.13 cm2 V−1 s−1 for the isomer with the larger transfer integral.
Issue Date: 7-Mar-2021
Date of Acceptance: 2-Feb-2021
URI: http://hdl.handle.net/10044/1/87970
DOI: 10.1039/d1ma00091h
Publisher: Wiley
Start Page: 1706
End Page: 1714
Journal / Book Title: Materials Advances
Volume: 2
Issue: 5
Copyright Statement: © 2021 The Author(s). Published by the Royal Society of Chemistry. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Sponsor/Funder: FWF Austrian Science Fund (FWF)
Funder's Grant Number: J 4463
Keywords: Science & Technology
Technology
Materials Science, Multidisciplinary
Materials Science
CHANNEL ORGANIC TRANSISTORS
FIELD-EFFECT TRANSISTORS
SEMICONDUCTING POLYMERS
DESIGN STRATEGIES
CHARGE-TRANSPORT
THIOPHENE
DCNQI
Science & Technology
Technology
Materials Science, Multidisciplinary
Materials Science
CHANNEL ORGANIC TRANSISTORS
FIELD-EFFECT TRANSISTORS
SEMICONDUCTING POLYMERS
DESIGN STRATEGIES
CHARGE-TRANSPORT
THIOPHENE
DCNQI
Publication Status: Published
Open Access location: https://pubs.rsc.org/en/content/articlepdf/2021/ma/d1ma00091h
Online Publication Date: 2021-02-03
Appears in Collections:Physics
Chemistry
Experimental Solid State



This item is licensed under a Creative Commons License Creative Commons