Hydrodehalogenation of Alkyl Iodides with Base-Mediated Hydrogenation and Catalytic Transfer Hydrogenation: Application to the Asymmetric Synthesis of N‑Protected α‑Methylamines

We report a very mild synthesis of N-protected α-methylamines from the corresponding amino acids. Carboxyl groups of amino acids are reduced to iodomethyl groups via hydroxymethyl intermediates. Reductive deiodination to methyl groups is achieved by hydrogenation or catalytic transfer hydrogenation...

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Veröffentlicht in:Journal of organic chemistry 2014-09, Vol.79 (17), p.8422-8427
Hauptverfasser: Mandal, Pijus K, Birtwistle, J. Sanderson, McMurray, John S
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container_title Journal of organic chemistry
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creator Mandal, Pijus K
Birtwistle, J. Sanderson
McMurray, John S
description We report a very mild synthesis of N-protected α-methylamines from the corresponding amino acids. Carboxyl groups of amino acids are reduced to iodomethyl groups via hydroxymethyl intermediates. Reductive deiodination to methyl groups is achieved by hydrogenation or catalytic transfer hydrogenation under alkaline conditions. Basic hydrodehalogenation is selective for the iodomethyl group over hydrogenolysis-labile protecting groups, such as benzyloxycarbonyl, benzyl ester, benzyl ether, and 9-fluorenyloxymethyl, thus allowing the conversion of virtually any protected amino acid into the corresponding N-protected α-methylamine.
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source MEDLINE; ACS Publications
subjects Alkalies - chemistry
amino acids
Catalysis
Hydrogenation
iodides
Iodides - chemistry
Magnetic Resonance Spectroscopy
Methylamines - chemical synthesis
Methylamines - chemistry
title Hydrodehalogenation of Alkyl Iodides with Base-Mediated Hydrogenation and Catalytic Transfer Hydrogenation: Application to the Asymmetric Synthesis of N‑Protected α‑Methylamines
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