0000000000133943

AUTHOR

Ines Bergner

showing 5 related works from this author

Modular one-pot synthesis of tetrasubstituted pyrroles from alpha-(alkylideneamino)nitriles.

2007

2,3,4,5-Tetrasubstituted pyrroles have been prepared with high regioselectivity by a formal cycloaddition of alpha-(alkylideneamino)nitriles and nitroolefins followed by elimination of HCN and HNO2. The reaction allows the convergent construction of the pyrrole ring in four steps from a nitroalkane and three aldehydes.

chemistry.chemical_classificationAldehydesNitrileOrganic ChemistryOne-pot synthesisNitroalkaneRegioselectivityAlkenesNitro CompoundsAldehydeChemical synthesisCycloadditionchemistry.chemical_compoundchemistryCyclizationNitrilesOrganic chemistryPyrrolesPyrroleThe Journal of organic chemistry
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Cyclocondensation of alpha-aminonitriles and enones: a short access to 3,4-dihydro-2H-pyrrole 2-carbonitriles and 2,3,5-trisubstituted pyrroles.

2009

The reaction of alpha,beta-unsaturated carbonyl compounds with aminoacetonitrile hydrochloride furnishes 3,5-disubstituted 3,4-dihydro-2H-pyrrole-2-carbonitriles in a one-pot reaction sequence. While these products can serve as starting materials for the preparation of polysubstituted pyrrolizidines, they are kinetically stable against the base-induced elimination of HCN. In contrast, their 2-substituted analogues obtained from alpha-substituted alpha-aminonitriles can be readily converted to the corresponding 2,3,5-trisubstituted pyrroles under microwave irradiation. The key step presumably involves the thermal electrocyclization of a stabilized 2-azapentadienyl anion formed by condensatio…

chemistry.chemical_compoundDeprotonationElectrocyclic reactionchemistryNitrileHydrochlorideOrganic ChemistryOrganic chemistryCondensation reactionChemical synthesisEnonePyrroleThe Journal of organic chemistry
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Synthesis of γ-Amino Acid Esters by 1,4-Addition of Deprotonated α-Aminonitriles and α-(Alkylideneamino)nitriles to α,β-Unsaturated Esters.

2007

α-Aminonitriles and α-(alkylideneamino)nitriles can serve as readily available α-aminocarbanion equivalents. Their conjugate addition to α,β-unsaturated esters followed by reduction furnishes polysubstituted γ-amino acid esters in moderate to high yield.

chemistry.chemical_classificationDeprotonationchemistryYield (chemistry)fungiOrganic chemistryGeneral MedicineAmino acidConjugateChemInform
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ChemInform Abstract: Modular One-Pot Synthesis of Tetrasubstituted Pyrroles from α-(Alkylideneamino)nitriles.

2008

2,3,4,5-Tetrasubstituted pyrroles have been prepared with high regioselectivity by a formal cycloaddition of α-(alkylideneamino)nitriles and nitroolefins followed by elimination of HCN and HNO2. The reaction allows the convergent construction of the pyrrole ring in four steps from a nitroalkane and three aldehydes.

chemistry.chemical_compoundchemistryOne-pot synthesisOrganic chemistryRegioselectivityNitroalkaneGeneral MedicineRing (chemistry)Combinatorial chemistryCycloadditionPyrrole derivativesPyrroleChemInform
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ChemInform Abstract: Cyclocondensation of α-Aminonitriles and Enones: A Short Access to 3,4-Dihydro-2H-pyrrole 2-Carbonitriles and 2,3,5-Trisubstitut…

2010

The reaction of α,β-unsaturated carbonyl compounds with aminoacetonitrile hydrochloride furnishes 3,5-disubstituted 3,4-dihydro-2H-pyrrole-2-carbonitriles in a one-pot reaction sequence. While these products can serve as starting materials for the preparation of polysubstituted pyrrolizidines, they are kinetically stable against the base-induced elimination of HCN. In contrast, their 2-substituted analogues obtained from α-substituted α-aminonitriles can be readily converted to the corresponding 2,3,5-trisubstituted pyrroles under microwave irradiation. The key step presumably involves the thermal electrocyclization of a stabilized 2-azapentadienyl anion formed by condensation of the reacta…

chemistry.chemical_compoundDeprotonationReaction sequenceChemistryHydrochlorideMicrowave irradiationCondensationAminoacetonitrileGeneral MedicineMedicinal chemistryPyrrole derivativesPyrroleChemInform
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