Search results for "Heterocycle"

showing 10 items of 134 documents

Simple two-step synthesis of 2,4-disubstituted pyrroles and 3,5-disubstituted pyrrole-2-carbonitriles from enones

2014

The cyclocondensation of enones with aminoacetonitrile furnishes 3,4-dihydro-2H-pyrrole-2-carbonitriles which can be readily converted to 2,4-disubstituted pyrroles by microwave-induced dehydrocyanation. Alternatively, oxidation of the intermediates produces 3,5-disubstituted pyrrole-2-carbonitriles.

heterocyclescyclizationOrganic ChemistryTwo stepα-aminonitrilesCombinatorial chemistryFull Research Papermicrowave-assisted synthesislcsh:QD241-441Chemistrychemistry.chemical_compoundchemistrylcsh:Organic chemistrySimple (abstract algebra)pyrrolesAminoacetonitrilelcsh:Qlcsh:SciencePyrroleBeilstein Journal of Organic Chemistry
researchProduct

Traceless chirality transfer from a norbornene β-amino acid to pyrimido[2,1-a]isoindole enantiomers

2017

The synthesis of two enantiomeric pairs of pyrimidoisoindoles 9a, 9b and 10a, 10b is reported. During a domino ring-closure reaction, followed by cycloreversion, the chirality of diendo-(−)-(1R,2S,3R,4S)-3-aminobicyclo[2.2.1]hept-5-ene-2-carboxamide [(−)-1] was successfully transfered to heterocycles (+)-9a, (+)-10a, (−)-9b, (−)-10b and (−)-10c. peerReviewed

heterocyclesfarmasiakemiaaminohapotbiologia
researchProduct

Scalable (Enantioselective) Syntheses of Novel 3-Methylated Analogs of Pazinaclone, (S)-PD172938 and Related Biologically Relevant Isoindolinones

2022

Herein, we report the application of an efficient and practical K2CO3 promoted cascade reaction of 2-acetylbenzonitrile in the synthesis of novel 3-methylated analogs of Pazinaclone and PD172938, belonging to isoindolinones heterocyclic class bearing a tetrasubstituted stereocenter. Organocatalytic asymmetric synthesis of the key intermediate and its transformation into highly enantioenriched 3-methylated analog of (S)-PD172938 was also developed. These achievements can be of particular interest also for medicinal chemistry, since the methyl group is a very useful structural modification in the rational design of new and more effective bioactive compounds.

heterocyclesisoindolinonesChemistry (miscellaneous)asymmetric synthesisOrganic ChemistryDrug Discoveryheterocycles; asymmetric synthesis; isoindolinonesMolecular MedicinePharmaceutical SciencePhysical and Theoretical ChemistryAnalytical ChemistryMolecules
researchProduct

The Boulton-Katritzky Reaction: A Kinetic Study of the Effect of 5-Nitrogen Substituents on the Rearrangement of Some (Z)-phenylhydrazones of 3-Benzo…

2014

The kinetics of the ring-into-ring conversion of some new (Z)-phenylhydrazones of 3-benzoyl-1,2,4-oxadiazole containing different nitrogen-substituents at C-5 (3b-d; X = NHMe, NMe2, and NHCOMe) into the relevant triazoles 4b-d have been examined in a wide range of pS+ (0.1-11.9) in 1:1 (v/v) dioxane/water solution. The obtained results have been compared with previous data concerning the (Z)-phenyl-hydrazone of 5-amino-3-benzoyl-1,2,4-oxadiazole (3a; X = NH2). All of the studied (Z)-phenylhydrazones rearrange through three different pathways (specific acid-catalysed, uncatalysed and general base-catalysed). The different effects of the substituents on the course of the rearrangement in the …

hydrazoneKinetics Rearrangement Heterocycles Hydrazones IsomerizationrearrangementkineticSettore CHIM/06 - Chimica OrganicaKinetics / Rearrangement / Heterocycles / Hydrazones / Isomerizationisomerizationheterocycle
researchProduct

Nanolayered Cobalt-Molybdenum Sulfides as Highly Chemo- and Regioselective Catalysts for the Hydrogenation of Quinoline Derivatives

2018

[EN] Herein, a general protocol for the preparation of a broad range of valuable N-heterocyclic products by hydrogenation of quinolines and related N-heteroarenes is described. Interestingly, the catalytic hydrogenation of the N-heteroarene ring is chemoselectively performed when other facile reducible functional groups, including alkenes, ketones, cyanides, carboxylic acids, esters, and amides, are present. The key to successful catalysis relies on the use of a nanolayered cobalt-molybdenum sulfide catalyst hydrothermally synthesized from earth-abundant metal precursors. This heterogeneous system displays a tunable composition of phases that allows for catalyst regeneration. Its catalytic …

inorganic chemicalsSulfidechemistry.chemical_element010402 general chemistryHeterogeneous catalysis01 natural sciencesCatalysisCatalysisMetalchemistry.chemical_compoundQUIMICA ORGANICAChemo-/regioselective hydrogenationN-heterocycleschemistry.chemical_classificationHeterogeneous catalysis010405 organic chemistryQuinolineRegioselectivityGeneral ChemistryCombinatorial chemistry0104 chemical sciencesCo-Mo-S catalystschemistryMolybdenumvisual_artvisual_art.visual_art_mediumQuinolinesCobalt
researchProduct

Direct arylation of heteroaromatic compounds with congested, functionalised aryl bromides at low palladium/triphosphane catalyst loading.

2011

International audience; A new ferrocenyl triphosphane ligand associated to palladium was found to be an efficient catalyst for the direct coupling of highly congested, functionalised aryl bromides with a variety of heteroarenes. These coupling reactions can generally be performed by using a low-loading (0.1-0.5 mol%) of the catalyst. The present protocol tolerates important and useful functional groups, which allows for further elaboration into more sophisticated heterocyclic molecules. The straightforward arylation of heteroaromatic compounds with congested ortho-substituted aryl bromides may permit further convergent syntheses of diverse ligands, biologically active molecules and molecula…

inorganic chemicalschemistry.chemical_element010402 general chemistry01 natural sciencesCatalysisCoupling reactionCatalysis[ CHIM.CATA ] Chemical Sciences/Catalysischemistry.chemical_compoundMoleculeOrganic chemistryEfficient catalystaryl bromidesheterocycles010405 organic chemistryChemistryLigandArylOrganic Chemistryferrocenyl polyphosphaneGeneral Chemistry[CHIM.CATA]Chemical Sciences/Catalysispalladium0104 chemical sciencesC[BOND]H activationTriphosphanePalladium
researchProduct

Can the absence of solvation of neutral reagents by ionic liquids be responsible for the high reactivity in base-assisted intramolecular nucleophilic…

2005

[reaction: see text] The kinetics of the rearrangement of the Z-phenylhydrazone of 3-benzoyl-5-phenyl-1,2,4-oxadiazole (1a) into the relevant 4-benzoylamino-2,5-diphenyl-1,2,3-triazole (2a) induced by amines have been studied in two room-temperature ionic liquids (IL-1, [BMIM][BF4] and IL-2, [BMIM][PF6]). The data collected show that the reaction occurs faster in ionic liquids than in other conventional solvents previously studied (both polar or apolar, protic or aprotic). Presumably, this could depend on their peculiar ability to minimize the strong substrate-solvent, amine-solvent and amine-amine interactions occurring in conventional solvents.

ionic liquids mononuclear rearrangement of heterocycles base catalysisOrganic ChemistrySolvationSolventchemistry.chemical_compoundchemistryNucleophileComputational chemistryIntramolecular forceIonic liquidNucleophilic substitutionOrganic chemistryReactivity (chemistry)Solvent effects
researchProduct

Stereoselective Synthesis of Spiro-Decalin Oxindole Derivatives via Sequential Organocatalytic Michael-Domino Michael/Aldol Reaction.

2022

A highly stereoselective procedure for the synthesis of spiro-polycyclic oxindoles bearing five contiguous stereogenic centers including two tetrasubstituted carbons has been developed. Under sequential organocatalysis performed by a pyrrolidine-based organocatalyst and DBU, a highly atom-economical Michael–domino Michael/aldol reaction sequence was optimized, yielding variously functionalized spiro-decalin oxindoles with excellent stereoselectivity (>99:1 dr, up to 92% ee). peerReviewed

kemiallinen synteesiAldehydesMolecular StructureOrganic Chemistryasymmetric organocatalysisdomino reactionssprio heterocyclesStereoisomerismNaphthalenesCatalysisOxindolesorgaaninen kemiaSpiro Compoundsasymmetric organocatalysis; oxindoles; sprio heterocycles; domino reactionsThe Journal of organic chemistry
researchProduct

Synthesis of Polycyclic Indolines utilizing a reduction/cyclization cascade reaction

2021

Subsequent reduction and dearomatizing cyclization reactions open up an entry into the synthesis of novel N-fused polycyclic indolines. The dearomatizing cyclization as key step of the sequence proceeds well with Cu(OTf)2 or TfOH as catalyst. At elevated temperature reduction of nitro-substituted precursors with iron under acidic conditions affords a broad variety of polycyclic indolines directly in a two-step cascade reaction in good to excellent yields. Using the developed protocol, the alkaloids Tryptanthrin and Phaitanthrin C have been prepared. peerReviewed

kemiallinen synteesicyclizationkatalyysinitrogen heterocyclescascade reactionshapetus-pelkistysreaktioorgaaniset yhdisteetacid catalysisdearomatization
researchProduct

Recent development in fluorinated antibiotics

2019

This chapter presents the most recent results in the development of fluorinated antibioticsby taking into consideration modern challenges of multidrug-resistant pathogens. After a brief introduction on the direct and indirect effects of fluorine and fluorinated moieties in regulating biological activity, the chapter is developed in three main subsections discussing the two major classes of fluorinated antibiotics, fluoroquinolones and oxazolidinones, plus an overview of recent research on the antibiotic activity of fluorinated analogs of tetracyclines, peptidomimetics, triazoles, and nucleosides. Discussed aspects include: (1) Synthesis and challenges posed by the introduction of fluorinate…

medicine.drug_classChemistryPeptidomimeticAntibiotics Fluorinated heterocycles Multidrug resistance Oxazolidinones QuinolonesAntibioticsmedicineSettore CHIM/06 - Chimica OrganicaCombinatorial chemistry
researchProduct