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Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer

To investigate potential applications of the 3,3′-dihydroxy-2,2′-biindan-1,1′-dione (BIT) structure as an organic semiconductor with intramolecular hydrogen bonds, a new synthetic route under mild conditions is developed based on the addition reaction of 1,3-dione to ninhydrin and the subsequent hyd...

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Autores principales: Nakano, Kyohei, Leong, Iat Wai, Hashizume, Daisuke, Bulgarevich, Kirill, Takimiya, Kazuo, Nishiyama, Yusuke, Yamazaki, Toshio, Tajima, Keisuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10631252/
https://www.ncbi.nlm.nih.gov/pubmed/37969578
http://dx.doi.org/10.1039/d3sc04125e
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author Nakano, Kyohei
Leong, Iat Wai
Hashizume, Daisuke
Bulgarevich, Kirill
Takimiya, Kazuo
Nishiyama, Yusuke
Yamazaki, Toshio
Tajima, Keisuke
author_facet Nakano, Kyohei
Leong, Iat Wai
Hashizume, Daisuke
Bulgarevich, Kirill
Takimiya, Kazuo
Nishiyama, Yusuke
Yamazaki, Toshio
Tajima, Keisuke
author_sort Nakano, Kyohei
collection PubMed
description To investigate potential applications of the 3,3′-dihydroxy-2,2′-biindan-1,1′-dione (BIT) structure as an organic semiconductor with intramolecular hydrogen bonds, a new synthetic route under mild conditions is developed based on the addition reaction of 1,3-dione to ninhydrin and the subsequent hydrogenation of the hydroxyl group. This route affords several new BIT derivatives, including asymmetrically substituted structures that are difficult to access by conventional high-temperature synthesis. The BIT derivatives exhibit rapid tautomerization by intramolecular double proton transfer in solution. The tautomerizations are also observed in the solid state by variable temperature measurements of X-ray diffractometry and magic angle spinning (13)C solid-state NMR. Possible interplay between the double proton transfer and the charge transport is suggested by quantum chemical calculations. The monoalkylated BIT derivative with a lamellar packing structure suitable for lateral charge transport in films shows a hole mobility of up to 0.012 cm(2) V(−1) s(−1) with a weak temperature dependence in an organic field effect transistor.
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spelling pubmed-106312522023-11-15 Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer Nakano, Kyohei Leong, Iat Wai Hashizume, Daisuke Bulgarevich, Kirill Takimiya, Kazuo Nishiyama, Yusuke Yamazaki, Toshio Tajima, Keisuke Chem Sci Chemistry To investigate potential applications of the 3,3′-dihydroxy-2,2′-biindan-1,1′-dione (BIT) structure as an organic semiconductor with intramolecular hydrogen bonds, a new synthetic route under mild conditions is developed based on the addition reaction of 1,3-dione to ninhydrin and the subsequent hydrogenation of the hydroxyl group. This route affords several new BIT derivatives, including asymmetrically substituted structures that are difficult to access by conventional high-temperature synthesis. The BIT derivatives exhibit rapid tautomerization by intramolecular double proton transfer in solution. The tautomerizations are also observed in the solid state by variable temperature measurements of X-ray diffractometry and magic angle spinning (13)C solid-state NMR. Possible interplay between the double proton transfer and the charge transport is suggested by quantum chemical calculations. The monoalkylated BIT derivative with a lamellar packing structure suitable for lateral charge transport in films shows a hole mobility of up to 0.012 cm(2) V(−1) s(−1) with a weak temperature dependence in an organic field effect transistor. The Royal Society of Chemistry 2023-10-16 /pmc/articles/PMC10631252/ /pubmed/37969578 http://dx.doi.org/10.1039/d3sc04125e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Nakano, Kyohei
Leong, Iat Wai
Hashizume, Daisuke
Bulgarevich, Kirill
Takimiya, Kazuo
Nishiyama, Yusuke
Yamazaki, Toshio
Tajima, Keisuke
Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
title Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
title_full Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
title_fullStr Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
title_full_unstemmed Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
title_short Synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
title_sort synthesis of 3,3′-dihydroxy-2,2′-diindan-1,1′-dione derivatives for tautomeric organic semiconductors exhibiting intramolecular double proton transfer
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10631252/
https://www.ncbi.nlm.nih.gov/pubmed/37969578
http://dx.doi.org/10.1039/d3sc04125e
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