Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis

Hydrogen atom transfer (HAT) hydrogenation of alkenes usually requires stoichiometric silanes and peroxides. Here, the authors report a silane- and peroxide-free HAT hydrogenation method using a combined cobalt/photoredox catalysis and vitamin C as a sole stoichiometric reactant.

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Autores principales: Yuji Kamei, Yusuke Seino, Yuto Yamaguchi, Tatsuhiko Yoshino, Satoshi Maeda, Masahiro Kojima, Shigeki Matsunaga
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/a56081321b4f461bbcb59287a5d99175
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spelling oai:doaj.org-article:a56081321b4f461bbcb59287a5d991752021-12-02T14:26:52ZSilane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis10.1038/s41467-020-20872-z2041-1723https://doaj.org/article/a56081321b4f461bbcb59287a5d991752021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20872-zhttps://doaj.org/toc/2041-1723Hydrogen atom transfer (HAT) hydrogenation of alkenes usually requires stoichiometric silanes and peroxides. Here, the authors report a silane- and peroxide-free HAT hydrogenation method using a combined cobalt/photoredox catalysis and vitamin C as a sole stoichiometric reactant.Yuji KameiYusuke SeinoYuto YamaguchiTatsuhiko YoshinoSatoshi MaedaMasahiro KojimaShigeki MatsunagaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yuji Kamei
Yusuke Seino
Yuto Yamaguchi
Tatsuhiko Yoshino
Satoshi Maeda
Masahiro Kojima
Shigeki Matsunaga
Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
description Hydrogen atom transfer (HAT) hydrogenation of alkenes usually requires stoichiometric silanes and peroxides. Here, the authors report a silane- and peroxide-free HAT hydrogenation method using a combined cobalt/photoredox catalysis and vitamin C as a sole stoichiometric reactant.
format article
author Yuji Kamei
Yusuke Seino
Yuto Yamaguchi
Tatsuhiko Yoshino
Satoshi Maeda
Masahiro Kojima
Shigeki Matsunaga
author_facet Yuji Kamei
Yusuke Seino
Yuto Yamaguchi
Tatsuhiko Yoshino
Satoshi Maeda
Masahiro Kojima
Shigeki Matsunaga
author_sort Yuji Kamei
title Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
title_short Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
title_full Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
title_fullStr Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
title_full_unstemmed Silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
title_sort silane- and peroxide-free hydrogen atom transfer hydrogenation using ascorbic acid and cobalt-photoredox dual catalysis
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a56081321b4f461bbcb59287a5d99175
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AT yutoyamaguchi silaneandperoxidefreehydrogenatomtransferhydrogenationusingascorbicacidandcobaltphotoredoxdualcatalysis
AT tatsuhikoyoshino silaneandperoxidefreehydrogenatomtransferhydrogenationusingascorbicacidandcobaltphotoredoxdualcatalysis
AT satoshimaeda silaneandperoxidefreehydrogenatomtransferhydrogenationusingascorbicacidandcobaltphotoredoxdualcatalysis
AT masahirokojima silaneandperoxidefreehydrogenatomtransferhydrogenationusingascorbicacidandcobaltphotoredoxdualcatalysis
AT shigekimatsunaga silaneandperoxidefreehydrogenatomtransferhydrogenationusingascorbicacidandcobaltphotoredoxdualcatalysis
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