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Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid

[Image: see text] A regioselective Pd-mediated C–H bond arylation methodology for tryptophans, utilizing stable aryldiazonium salts, affords C2-arylated tryptophan derivatives, in several cases quantitatively. The reactions proceed in air, without base, and at room temperature in EtOAc. The syntheti...

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Autores principales: Reay, Alan J., Hammarback, L. Anders, Bray, Joshua T. W., Sheridan, Thomas, Turnbull, David, Whitwood, Adrian C., Fairlamb, Ian J. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5557615/
https://www.ncbi.nlm.nih.gov/pubmed/28824821
http://dx.doi.org/10.1021/acscatal.6b03121
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author Reay, Alan J.
Hammarback, L. Anders
Bray, Joshua T. W.
Sheridan, Thomas
Turnbull, David
Whitwood, Adrian C.
Fairlamb, Ian J. S.
author_facet Reay, Alan J.
Hammarback, L. Anders
Bray, Joshua T. W.
Sheridan, Thomas
Turnbull, David
Whitwood, Adrian C.
Fairlamb, Ian J. S.
author_sort Reay, Alan J.
collection PubMed
description [Image: see text] A regioselective Pd-mediated C–H bond arylation methodology for tryptophans, utilizing stable aryldiazonium salts, affords C2-arylated tryptophan derivatives, in several cases quantitatively. The reactions proceed in air, without base, and at room temperature in EtOAc. The synthetic methodology has been evaluated and compared against other tryptophan derivative arylation methods using the CHEM21 green chemistry toolkit. The behavior of the Pd catalyst species has been probed in preliminary mechanistic studies, which indicate that the reaction is operating homogeneously, although Pd nanoparticles are formed during substrate turnover. The effects of these higher order Pd species on catalysis, under the reaction conditions examined, appear to be minimal: e.g., acting as a Pd reservoir in the latter stages of substrate turnover or as a moribund form (derived from catalyst deactivation). We have determined that TsOH shortens the induction period observed when [ArN(2)]BF(4) salts are employed with Pd(OAc)(2). Pd(OTs)(2)(MeCN)(2) was found to be a superior precatalyst (confirmed by kinetic studies) in comparison to Pd(OAc)(2).
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spelling pubmed-55576152017-08-17 Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid Reay, Alan J. Hammarback, L. Anders Bray, Joshua T. W. Sheridan, Thomas Turnbull, David Whitwood, Adrian C. Fairlamb, Ian J. S. ACS Catal [Image: see text] A regioselective Pd-mediated C–H bond arylation methodology for tryptophans, utilizing stable aryldiazonium salts, affords C2-arylated tryptophan derivatives, in several cases quantitatively. The reactions proceed in air, without base, and at room temperature in EtOAc. The synthetic methodology has been evaluated and compared against other tryptophan derivative arylation methods using the CHEM21 green chemistry toolkit. The behavior of the Pd catalyst species has been probed in preliminary mechanistic studies, which indicate that the reaction is operating homogeneously, although Pd nanoparticles are formed during substrate turnover. The effects of these higher order Pd species on catalysis, under the reaction conditions examined, appear to be minimal: e.g., acting as a Pd reservoir in the latter stages of substrate turnover or as a moribund form (derived from catalyst deactivation). We have determined that TsOH shortens the induction period observed when [ArN(2)]BF(4) salts are employed with Pd(OAc)(2). Pd(OTs)(2)(MeCN)(2) was found to be a superior precatalyst (confirmed by kinetic studies) in comparison to Pd(OAc)(2). American Chemical Society 2017-07-10 2017-08-04 /pmc/articles/PMC5557615/ /pubmed/28824821 http://dx.doi.org/10.1021/acscatal.6b03121 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Reay, Alan J.
Hammarback, L. Anders
Bray, Joshua T. W.
Sheridan, Thomas
Turnbull, David
Whitwood, Adrian C.
Fairlamb, Ian J. S.
Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid
title Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid
title_full Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid
title_fullStr Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid
title_full_unstemmed Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid
title_short Mild and Regioselective Pd(OAc)(2)-Catalyzed C–H Arylation of Tryptophans by [ArN(2)]X, Promoted by Tosic Acid
title_sort mild and regioselective pd(oac)(2)-catalyzed c–h arylation of tryptophans by [arn(2)]x, promoted by tosic acid
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5557615/
https://www.ncbi.nlm.nih.gov/pubmed/28824821
http://dx.doi.org/10.1021/acscatal.6b03121
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