Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses

Experiments towards the diastereoselective coupling of new malonic acid amides synthesized with commercially available chiral amines [(S)-(+)-1-cyclohexylethylamine and (R)-(+)-1-phenylethylamine] as chiral auxiliaries were performed through Kolbe oxidations [undivided cell, Pt (anode and cathode),...

Full description

Bibliographic Details
Main Authors: Goulart Marília O.F., Schäfer Hans-Yürgen
Format: Article
Language:English
Published: Sociedade Brasileira de Química 1999-01-01
Series:Journal of the Brazilian Chemical Society
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-50531999000200014
id doaj-c91ad80901ac4160b4a0efa83738a21e
record_format Article
spelling doaj-c91ad80901ac4160b4a0efa83738a21e2020-11-24T22:14:27ZengSociedade Brasileira de QuímicaJournal of the Brazilian Chemical Society0103-50531999-01-01102153162Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe ElectrolysesGoulart Marília O.F.Schäfer Hans-YürgenExperiments towards the diastereoselective coupling of new malonic acid amides synthesized with commercially available chiral amines [(S)-(+)-1-cyclohexylethylamine and (R)-(+)-1-phenylethylamine] as chiral auxiliaries were performed through Kolbe oxidations [undivided cell, Pt (anode and cathode), MeOH, 5% to 10% KOH neutralisation, 200 to 250 mA/cm²], using different co-acids (hexanoic, trimethylsilylacetic and diethylphosphonoacetic acids and phthaloylglycine). New long chain and silylated amides (mixed Kolbe dimer) were obtained in good yields (56 to 63%) and low diastereoselectivity, in the presence of a large excess of co-acids, together with disproportionation and non-Kolbe (nK) products, mainly methoxy derivatives. Coupling was more effective with radicals with opposite reactivity. Electrophilic radicals couple between themselves to a lesser extent. Diastereoselective induction was not high. Studies performed with phthaloylglycine, under Kolbe conditions, in the absence and presence of hexanoic acid as a co-acid led to the symmetrical dimer, a N-methoxymethyl-hydroxylactam and a N-methoxyphthalimide. In the presence of hexanoic acid, the latter products were obtained together with alkylated imide and the corresponding hydroxylactam.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-50531999000200014diastereoselective Kolbe reactionmalonamic acidsphthaloylglycinehydroxylactam
collection DOAJ
language English
format Article
sources DOAJ
author Goulart Marília O.F.
Schäfer Hans-Yürgen
spellingShingle Goulart Marília O.F.
Schäfer Hans-Yürgen
Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses
Journal of the Brazilian Chemical Society
diastereoselective Kolbe reaction
malonamic acids
phthaloylglycine
hydroxylactam
author_facet Goulart Marília O.F.
Schäfer Hans-Yürgen
author_sort Goulart Marília O.F.
title Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses
title_short Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses
title_full Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses
title_fullStr Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses
title_full_unstemmed Diastereomeric Amides Derived from Malonic Acid: the Role of Chiral Auxiliaries and of the Nature of Co-Acids in the Mixed Kolbe Electrolyses
title_sort diastereomeric amides derived from malonic acid: the role of chiral auxiliaries and of the nature of co-acids in the mixed kolbe electrolyses
publisher Sociedade Brasileira de Química
series Journal of the Brazilian Chemical Society
issn 0103-5053
publishDate 1999-01-01
description Experiments towards the diastereoselective coupling of new malonic acid amides synthesized with commercially available chiral amines [(S)-(+)-1-cyclohexylethylamine and (R)-(+)-1-phenylethylamine] as chiral auxiliaries were performed through Kolbe oxidations [undivided cell, Pt (anode and cathode), MeOH, 5% to 10% KOH neutralisation, 200 to 250 mA/cm²], using different co-acids (hexanoic, trimethylsilylacetic and diethylphosphonoacetic acids and phthaloylglycine). New long chain and silylated amides (mixed Kolbe dimer) were obtained in good yields (56 to 63%) and low diastereoselectivity, in the presence of a large excess of co-acids, together with disproportionation and non-Kolbe (nK) products, mainly methoxy derivatives. Coupling was more effective with radicals with opposite reactivity. Electrophilic radicals couple between themselves to a lesser extent. Diastereoselective induction was not high. Studies performed with phthaloylglycine, under Kolbe conditions, in the absence and presence of hexanoic acid as a co-acid led to the symmetrical dimer, a N-methoxymethyl-hydroxylactam and a N-methoxyphthalimide. In the presence of hexanoic acid, the latter products were obtained together with alkylated imide and the corresponding hydroxylactam.
topic diastereoselective Kolbe reaction
malonamic acids
phthaloylglycine
hydroxylactam
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0103-50531999000200014
work_keys_str_mv AT goulartmariliaof diastereomericamidesderivedfrommalonicacidtheroleofchiralauxiliariesandofthenatureofcoacidsinthemixedkolbeelectrolyses
AT schaferhansyurgen diastereomericamidesderivedfrommalonicacidtheroleofchiralauxiliariesandofthenatureofcoacidsinthemixedkolbeelectrolyses
_version_ 1725798811306033152