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Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors

Picene derivatives incorporating imide moieties along the long-axis direction of the picene core (C(n)-PicDIs) were conveniently synthesized through a four-step synthesis. Photochemical cyclization of dinaphthylethenes was used as the key step for constructing the picene skeleton. Field-effect trans...

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Autores principales: Guo, Yuxin, Yoshioka, Kaito, Hamao, Shino, Kubozono, Yoshihiro, Tani, Fumito, Goto, Kenta, Okamoto, Hideki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056408/
https://www.ncbi.nlm.nih.gov/pubmed/35520656
http://dx.doi.org/10.1039/d0ra06629j
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author Guo, Yuxin
Yoshioka, Kaito
Hamao, Shino
Kubozono, Yoshihiro
Tani, Fumito
Goto, Kenta
Okamoto, Hideki
author_facet Guo, Yuxin
Yoshioka, Kaito
Hamao, Shino
Kubozono, Yoshihiro
Tani, Fumito
Goto, Kenta
Okamoto, Hideki
author_sort Guo, Yuxin
collection PubMed
description Picene derivatives incorporating imide moieties along the long-axis direction of the picene core (C(n)-PicDIs) were conveniently synthesized through a four-step synthesis. Photochemical cyclization of dinaphthylethenes was used as the key step for constructing the picene skeleton. Field-effect transistor (FET) devices of C(n)-PicDIs were fabricated by using ZrO(2) as a gate substrate and their FET characteristics were investigated. The FET devices showed normally-off n-channel operation; the averaged electron mobility (μ) was evaluated to be 2(1) × 10(−4), 1.0(6) × 10(−1) and 1.4(3) × 10(−2) cm(2) V(−1) s(−1) for C(4)-PicDI, C(8)-PicDI and C(12)-PicDI, respectively. The maximum μ value as high as 2.0 × 10(−1) cm(2) V(−1) s(−1) was observed for C(8)-PicDI. The electronic spectra of C(n)-PicDIs in solution showed the same profiles irrespective of the alkyl chain lengths. In contrast, in thin films, the UV absorption and photoelectron yield spectroscopy (PYS) indicated that the lowest unoccupied molecular orbital (LUMO) level of C(n)-PicDIs gradually lowered upon the elongation of the alkyl chains, suggesting that the alkyl chains modify intermolecular interactions between the C(n)-PicDI molecules in thin films. The present results provide a new strategy for constructing a high performance n-channel organic semiconductor material by utilizing the electronic features of phenacenes.
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spelling pubmed-90564082022-05-04 Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors Guo, Yuxin Yoshioka, Kaito Hamao, Shino Kubozono, Yoshihiro Tani, Fumito Goto, Kenta Okamoto, Hideki RSC Adv Chemistry Picene derivatives incorporating imide moieties along the long-axis direction of the picene core (C(n)-PicDIs) were conveniently synthesized through a four-step synthesis. Photochemical cyclization of dinaphthylethenes was used as the key step for constructing the picene skeleton. Field-effect transistor (FET) devices of C(n)-PicDIs were fabricated by using ZrO(2) as a gate substrate and their FET characteristics were investigated. The FET devices showed normally-off n-channel operation; the averaged electron mobility (μ) was evaluated to be 2(1) × 10(−4), 1.0(6) × 10(−1) and 1.4(3) × 10(−2) cm(2) V(−1) s(−1) for C(4)-PicDI, C(8)-PicDI and C(12)-PicDI, respectively. The maximum μ value as high as 2.0 × 10(−1) cm(2) V(−1) s(−1) was observed for C(8)-PicDI. The electronic spectra of C(n)-PicDIs in solution showed the same profiles irrespective of the alkyl chain lengths. In contrast, in thin films, the UV absorption and photoelectron yield spectroscopy (PYS) indicated that the lowest unoccupied molecular orbital (LUMO) level of C(n)-PicDIs gradually lowered upon the elongation of the alkyl chains, suggesting that the alkyl chains modify intermolecular interactions between the C(n)-PicDI molecules in thin films. The present results provide a new strategy for constructing a high performance n-channel organic semiconductor material by utilizing the electronic features of phenacenes. The Royal Society of Chemistry 2020-08-26 /pmc/articles/PMC9056408/ /pubmed/35520656 http://dx.doi.org/10.1039/d0ra06629j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Guo, Yuxin
Yoshioka, Kaito
Hamao, Shino
Kubozono, Yoshihiro
Tani, Fumito
Goto, Kenta
Okamoto, Hideki
Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
title Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
title_full Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
title_fullStr Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
title_full_unstemmed Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
title_short Facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
title_sort facile synthesis of picenes incorporating imide moieties at both edges of the molecule and their application to n-channel field-effect transistors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056408/
https://www.ncbi.nlm.nih.gov/pubmed/35520656
http://dx.doi.org/10.1039/d0ra06629j
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