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Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly

[Image: see text] The transmetalation of the digold(I) complex [Au(2)Cl(2)(dcpm)] (1) (dcpm = bis(dicyclohexylphosphino)methane) with oligophenylene diboronic acids gave the triangular macrocyclic complexes [Au(2)(C(6)H(4))(x)(dcpm)](3) (x = 3, 4, 5) with yields of over 70%. On the other hand, when...

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Autores principales: Yoshigoe, Yusuke, Tanji, Yohei, Hata, Yusei, Osakada, Kohtaro, Saito, Shinichi, Kayahara, Eiichi, Yamago, Shigeru, Tsuchido, Yoshitaka, Kawai, Hidetoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400051/
https://www.ncbi.nlm.nih.gov/pubmed/36032535
http://dx.doi.org/10.1021/jacsau.2c00194
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author Yoshigoe, Yusuke
Tanji, Yohei
Hata, Yusei
Osakada, Kohtaro
Saito, Shinichi
Kayahara, Eiichi
Yamago, Shigeru
Tsuchido, Yoshitaka
Kawai, Hidetoshi
author_facet Yoshigoe, Yusuke
Tanji, Yohei
Hata, Yusei
Osakada, Kohtaro
Saito, Shinichi
Kayahara, Eiichi
Yamago, Shigeru
Tsuchido, Yoshitaka
Kawai, Hidetoshi
author_sort Yoshigoe, Yusuke
collection PubMed
description [Image: see text] The transmetalation of the digold(I) complex [Au(2)Cl(2)(dcpm)] (1) (dcpm = bis(dicyclohexylphosphino)methane) with oligophenylene diboronic acids gave the triangular macrocyclic complexes [Au(2)(C(6)H(4))(x)(dcpm)](3) (x = 3, 4, 5) with yields of over 70%. On the other hand, when the other digold(I) complex [Au(2)Cl(2)(dppm)] (1′) (dppm = bis(diphenylphosphino)methane) was used, only a negligible amount of the triangular complex was obtained. The control experiments revealed that the dcpm ligand accelerated an intermolecular Au(I)–C σ-bond-exchange reaction and that this high reversibility is the origin of the selective formation of the triangular complexes. Structural analyses and theoretical calculations indicate that the dcpm ligand increases the electrophilicity of the Au atom in the complex, thus facilitating the exchange reaction, although the cyclohexyl group is an electron-donating group. Furthermore, the oxidative chlorination of the macrocyclic gold complexes afforded a series of [n]cycloparaphenylenes (n = 9, 12, 15) in 78–88% isolated yields. The reorganization of two different macrocyclic Au complexes gave a mixture of macrocyclic complexes incorporating different oligophenylene linkers, from which a mixture of [n]cycloparaphenylenes with various numbers of phenylene units was obtained in good yields.
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spelling pubmed-94000512022-08-25 Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly Yoshigoe, Yusuke Tanji, Yohei Hata, Yusei Osakada, Kohtaro Saito, Shinichi Kayahara, Eiichi Yamago, Shigeru Tsuchido, Yoshitaka Kawai, Hidetoshi JACS Au [Image: see text] The transmetalation of the digold(I) complex [Au(2)Cl(2)(dcpm)] (1) (dcpm = bis(dicyclohexylphosphino)methane) with oligophenylene diboronic acids gave the triangular macrocyclic complexes [Au(2)(C(6)H(4))(x)(dcpm)](3) (x = 3, 4, 5) with yields of over 70%. On the other hand, when the other digold(I) complex [Au(2)Cl(2)(dppm)] (1′) (dppm = bis(diphenylphosphino)methane) was used, only a negligible amount of the triangular complex was obtained. The control experiments revealed that the dcpm ligand accelerated an intermolecular Au(I)–C σ-bond-exchange reaction and that this high reversibility is the origin of the selective formation of the triangular complexes. Structural analyses and theoretical calculations indicate that the dcpm ligand increases the electrophilicity of the Au atom in the complex, thus facilitating the exchange reaction, although the cyclohexyl group is an electron-donating group. Furthermore, the oxidative chlorination of the macrocyclic gold complexes afforded a series of [n]cycloparaphenylenes (n = 9, 12, 15) in 78–88% isolated yields. The reorganization of two different macrocyclic Au complexes gave a mixture of macrocyclic complexes incorporating different oligophenylene linkers, from which a mixture of [n]cycloparaphenylenes with various numbers of phenylene units was obtained in good yields. American Chemical Society 2022-07-11 /pmc/articles/PMC9400051/ /pubmed/36032535 http://dx.doi.org/10.1021/jacsau.2c00194 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Yoshigoe, Yusuke
Tanji, Yohei
Hata, Yusei
Osakada, Kohtaro
Saito, Shinichi
Kayahara, Eiichi
Yamago, Shigeru
Tsuchido, Yoshitaka
Kawai, Hidetoshi
Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly
title Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly
title_full Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly
title_fullStr Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly
title_full_unstemmed Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly
title_short Dynamic Au–C σ-Bonds Leading to an Efficient Synthesis of [n]Cycloparaphenylenes (n = 9–15) by Self-Assembly
title_sort dynamic au–c σ-bonds leading to an efficient synthesis of [n]cycloparaphenylenes (n = 9–15) by self-assembly
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9400051/
https://www.ncbi.nlm.nih.gov/pubmed/36032535
http://dx.doi.org/10.1021/jacsau.2c00194
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