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Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors

A novel quinoidal thienoisoindigo (TII)‐containing small molecule family with dicyanomethylene end‐capping units and various alkyl chains is synthesized as n‐type organic small molecules for solution‐processable organic field effect transistors (OFETs). The molecular structure of the 2‐hexyldecyl su...

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Autores principales: Velusamy, Arulmozhi, Yu, Chih‐Hsin, Afraj, Shakil N., Lin, Chia‐Chi, Lo, Wei‐Yu, Yeh, Chia‐Jung, Wu, Ya‐Wen, Hsieh, Hsin‐Chun, Chen, Jianhua, Lee, Gene‐Hsiang, Tung, Shih‐Huang, Liu, Cheng‐Liang, Chen, Ming‐Chou, Facchetti, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7788596/
https://www.ncbi.nlm.nih.gov/pubmed/33437584
http://dx.doi.org/10.1002/advs.202002930
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author Velusamy, Arulmozhi
Yu, Chih‐Hsin
Afraj, Shakil N.
Lin, Chia‐Chi
Lo, Wei‐Yu
Yeh, Chia‐Jung
Wu, Ya‐Wen
Hsieh, Hsin‐Chun
Chen, Jianhua
Lee, Gene‐Hsiang
Tung, Shih‐Huang
Liu, Cheng‐Liang
Chen, Ming‐Chou
Facchetti, Antonio
author_facet Velusamy, Arulmozhi
Yu, Chih‐Hsin
Afraj, Shakil N.
Lin, Chia‐Chi
Lo, Wei‐Yu
Yeh, Chia‐Jung
Wu, Ya‐Wen
Hsieh, Hsin‐Chun
Chen, Jianhua
Lee, Gene‐Hsiang
Tung, Shih‐Huang
Liu, Cheng‐Liang
Chen, Ming‐Chou
Facchetti, Antonio
author_sort Velusamy, Arulmozhi
collection PubMed
description A novel quinoidal thienoisoindigo (TII)‐containing small molecule family with dicyanomethylene end‐capping units and various alkyl chains is synthesized as n‐type organic small molecules for solution‐processable organic field effect transistors (OFETs). The molecular structure of the 2‐hexyldecyl substituted derivative, TIIQ‐b16, is determined via single‐crystal X‐ray diffraction and shows that the TIIQ core is planar and exhibits molecular layers stacked in a “face‐to‐face” arrangement with short core intermolecular distances of 3.28 Å. The very planar core structure, shortest intermolecular N···H distance (2.52 Å), existence of an intramolecular non‐bonded contact between sulfur and oxygen atom (S···O) of 2.80 Å, and a very low‐lying LUMO energy level of −4.16 eV suggest that TIIQ molecules should be electron transporting semiconductors. The physical, thermal, and electrochemical properties as well as OFET performance and thin film morphologies of these new TIIQs are systematically studied. Thus, air‐processed TIIQ‐b16 OFETs exhibit an electron mobility up to 2.54 cm(2) V(−1) s(−1) with a current ON/OFF ratio of 10(5)–10(6), which is the first demonstration of TII‐based small molecules exhibiting unipolar electron transport characteristics and enhanced ambient stability. These results indicate that construction of quinoidal molecule from TII moiety is a successful approach to enhance n‐type charge transport characteristics.
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spelling pubmed-77885962021-01-11 Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors Velusamy, Arulmozhi Yu, Chih‐Hsin Afraj, Shakil N. Lin, Chia‐Chi Lo, Wei‐Yu Yeh, Chia‐Jung Wu, Ya‐Wen Hsieh, Hsin‐Chun Chen, Jianhua Lee, Gene‐Hsiang Tung, Shih‐Huang Liu, Cheng‐Liang Chen, Ming‐Chou Facchetti, Antonio Adv Sci (Weinh) Full Papers A novel quinoidal thienoisoindigo (TII)‐containing small molecule family with dicyanomethylene end‐capping units and various alkyl chains is synthesized as n‐type organic small molecules for solution‐processable organic field effect transistors (OFETs). The molecular structure of the 2‐hexyldecyl substituted derivative, TIIQ‐b16, is determined via single‐crystal X‐ray diffraction and shows that the TIIQ core is planar and exhibits molecular layers stacked in a “face‐to‐face” arrangement with short core intermolecular distances of 3.28 Å. The very planar core structure, shortest intermolecular N···H distance (2.52 Å), existence of an intramolecular non‐bonded contact between sulfur and oxygen atom (S···O) of 2.80 Å, and a very low‐lying LUMO energy level of −4.16 eV suggest that TIIQ molecules should be electron transporting semiconductors. The physical, thermal, and electrochemical properties as well as OFET performance and thin film morphologies of these new TIIQs are systematically studied. Thus, air‐processed TIIQ‐b16 OFETs exhibit an electron mobility up to 2.54 cm(2) V(−1) s(−1) with a current ON/OFF ratio of 10(5)–10(6), which is the first demonstration of TII‐based small molecules exhibiting unipolar electron transport characteristics and enhanced ambient stability. These results indicate that construction of quinoidal molecule from TII moiety is a successful approach to enhance n‐type charge transport characteristics. John Wiley and Sons Inc. 2020-11-20 /pmc/articles/PMC7788596/ /pubmed/33437584 http://dx.doi.org/10.1002/advs.202002930 Text en © 2020 The Authors. Published by Wiley‐VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Velusamy, Arulmozhi
Yu, Chih‐Hsin
Afraj, Shakil N.
Lin, Chia‐Chi
Lo, Wei‐Yu
Yeh, Chia‐Jung
Wu, Ya‐Wen
Hsieh, Hsin‐Chun
Chen, Jianhua
Lee, Gene‐Hsiang
Tung, Shih‐Huang
Liu, Cheng‐Liang
Chen, Ming‐Chou
Facchetti, Antonio
Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors
title Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors
title_full Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors
title_fullStr Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors
title_full_unstemmed Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors
title_short Thienoisoindigo (TII)‐Based Quinoidal Small Molecules for High‐Performance n‐Type Organic Field Effect Transistors
title_sort thienoisoindigo (tii)‐based quinoidal small molecules for high‐performance n‐type organic field effect transistors
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7788596/
https://www.ncbi.nlm.nih.gov/pubmed/33437584
http://dx.doi.org/10.1002/advs.202002930
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