Search results for "Bicyclic molecule"

showing 10 items of 254 documents

Organometallic Complexes with Biological Molecules, VI. Diorganotin(IV) and Triorganotin(IV) Ampicillin and Methicillin Derivatives: Spectroscopic In…

1996

Derivatives of D(-)-α-aminobenzylpenicillin (ampicillin) and of 2,6-dimethoxyphenylpenicillin (methicillin) with diorgano- and triorgano-tin(IV) moieties have been synthesized. The stoichiometries of the compounds obtained were of the type R 2 SnCIL.H 2 O, R 3 SnCILNa.H 2 O [L=ampicillin or methicillin monoanion; R=Me, Bu, Ph] and R 2 Snampic 2 . 2H 2 O (ampic=ampicillin; R=Me, Bu, Ph). For R 2 SnCIL.H 2 O and R 3 SnCILNa.-H 2 O, infrared (IR) data suggest five-coordination around the tin(IV) atom; in R 2 Snampic 2 .2H 2 O six-coordination is most likely to occur. Thermogravimetric (TG) analysis excludes any involvement in the coordination of tin(IV) by water molecules, in any of the compou…

DenticityBicyclic moleculeStereochemistrychemistry.chemical_elementGeneral ChemistryMedicinal chemistryInorganic ChemistryBipyramidTrigonal bipyramidal molecular geometrychemistryOctahedronTinHydrateCoordination geometryApplied Organometallic Chemistry
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Syntheses, structural characterisation and magnetic properties of Fe(ii) and Mn(ii) compounds with the pentacyanopropenido ligand; structural charact…

2006

International audience; Reactions between the metal(II) salts [M(CH3CN)n](BF4)2 (M = Fe, n = 6; M = Mn, n = 4) and some organic anionic polynitriles were studied. With the pentacyanopropenide anion pcp− [pcp− = (NC)2CC(CN)C(CN)2−], were obtained, according to the experimental conditions, the new complexes [M(pcp)2(H2O)4] (1, M = Fe; 2, M = Mn) and [M(pcp)2] (3, M = Fe; 4 = Mn). Use of the hexacyano-3,4-diazahexadienediide anion [(NC)2CC(CN)NNC(CN)C(CN)22−] instead of pcp− did not afford polynitrile metal complexes but led to a new organic derivative 5, of formula C10N8H2. Crystallographic studies indicated that the isostructural compounds 1 and 2 involve discrete monomeric units with pcp li…

DenticityStereochemistryZero field splitting[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistry01 natural sciences[ CHIM ] Chemical SciencesCatalysisMetalDelocalized electronMaterials Chemistry[CHIM]Chemical Sciences[CHIM.COOR]Chemical Sciences/Coordination chemistryIsostructuralBicyclic molecule010405 organic chemistryChemistryHydrogen bondLigand[ CHIM.COOR ] Chemical Sciences/Coordination chemistry[ CHIM.INOR ] Chemical Sciences/Inorganic chemistryGeneral Chemistry0104 chemical sciencesCrystallographyvisual_artvisual_art.visual_art_medium
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A new synthetic entry into the tricyclo[3.3.0.03,7] octane skeleton

1987

Abstract A short synthesis of dimethyl tricyclo[3.3.0.03,7] octane-1,5-dicarboxylate, 13 , and its 3,7-dimethyl-derivative, 14 , by iodine oxidation of the bis-enolate derived from the corresponding dimethyl cis -bicyclo[3.3.0] octane-3,7-dicarboxylate, 11 or 12 , is described.

Diketonechemistry.chemical_compoundBicyclic moleculeChemistryOrganic ChemistryDrug DiscoveryOrganic chemistrySkeleton (category theory)BiochemistryPolyquinaneOctane
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Enzymatic esterification of bicyclic meso-diols derived from 1,4-bis(hydroxymethyl)furan. An enantioselective Diels–Alder reaction equivalent

1998

Abstract meso -Diols derived from the Diels–Alder adduct 1,4-bis(hydroxymethyl)furan/dimethyl acetylenedicarboxylate can be enantioselectively monoacetylated under CRL or PSL catalysis with very good yields and moderate to excellent ees. (+)-Monoacetates are always preferentially formed in the reactions catalyzed by CRL, and their (−)-enantiomers are the main products in the acetylations under PSL catalysis. Absolute configurations have been determined by X-ray analysis of a single crystal of an ( R )-α-methoxyphenylacetyl derivative.

Dimethyl acetylenedicarboxylateBicyclic moleculeChemistryOrganic ChemistryEnantioselective synthesisMedicinal chemistryCatalysisAdductInorganic Chemistrychemistry.chemical_compoundFuranHydroxymethylPhysical and Theoretical ChemistryDerivative (chemistry)Diels–Alder reactionTetrahedron: Asymmetry
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Triazolopyridines. Part 11. Ylides derived from 2-Acylmethyltriazolopyridinium salts.

1991

Abstract Ylides derived from 2-acylmethyltriazolopyridinium salts (2a) -(2c) react with methyl or ethyl propiolate and with dimethyl acetylenedicarboxylate to give ylides (3a)–(3e), (6) or (7). In some cases 1:2 adducts are formed, shown to be the novel ylides (8a)–(8d); an X-ray diffraction confirms structure (8a).

Dimethyl acetylenedicarboxylateBicyclic moleculeOrganic ChemistryCrystal structureNuclear magnetic resonance spectroscopyBiochemistryMedicinal chemistryAdductEthyl propiolatechemistry.chemical_compoundchemistryDrug DiscoveryX-ray crystallographyMichael reactionTetrahedron
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Cycloaddition reactions. A new type of cycloadduct from a substituted 2-vinylthiophen and dmad

1987

Abstract Cycloaddition reactions between 2-(1-cyanoallyl)thiophen and the dienophiles diethyl azodicarboxylate, N-phenylmaleimide , methyl propiolate, and dimethyl acetylenedicarboxylate are reported. Products include simple benzo[b] thiophen carboxylates (13,19) and reduced derivatives (8,9,10,12,18), as a mixture of diastereoisomers, except in the adduct with diethyl azodicarboxylate. With dimethyl acetylenedicarboxylate a new type of tricyclic compound was also found (20).

Dimethyl acetylenedicarboxylateBicyclic moleculeOrganic ChemistryDiastereomerNuclear magnetic resonance spectroscopyBiochemistryCycloadditionAdductDiethyl azodicarboxylatechemistry.chemical_compoundchemistryDrug DiscoveryOrganic chemistryAliphatic compoundTetrahedron
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Cycloaddition reactions of 2-vinylthiophen

1985

Abstract Cycloaddition reactions between 2-vinylthiophen and the dienophiles maleic anhydride, dimethyl acetylenedicarboxylate,' methyl propiolate, and methyl acrylate, are reported. Products include simple benzo[b]thiophen carboxylates (6, 13, 17) and reduced derivatives (3, 4, 18). The acetylenic dienophiles also gave a dihydrobenzthienyl-acrylate (16) or -fumarate (11), and the dithienylcyclohexene esters (7) and (14).

Dimethyl acetylenedicarboxylatechemistry.chemical_compoundBicyclic moleculeChemistryMethyl propiolateOrganic ChemistryDrug DiscoveryOrganic chemistryMaleic anhydrideDehydrogenationMethyl acrylateBiochemistryCycloadditionTetrahedron
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Dual Role of Vinyl Sulfonamides as N -Nucleophiles and Michael Acceptors in the Enantioselective Synthesis of Bicyclic δ-Sultams

2018

Dual roleNucleophileBicyclic molecule010405 organic chemistryChemistryOrganocatalysisEnantioselective synthesisOrganic chemistryGeneral Chemistry010402 general chemistry01 natural sciences0104 chemical sciencesAdvanced Synthesis & Catalysis
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Two atropisomers of tricarbonyl[η6-7-chloro-3-(3-chloro-2-methylphenyl)-2,4,8-trimethyl-1,2,3,4-tetrahydro-2,4-dibora-1,3-diazanaphthalene]chromium(0)

2001

The structures of two atropisomers of the title compound, [Cr(C16H18B2Cl2N2)(CO)3], are reported. For both compounds, the Cr(CO)3 moiety is bound to the C6 aromatic ring of the mol­ecule; the existence of atropisomers resulting from the non-equivalence of both faces of the C6 aromatic ring is a consequence of the 3-chloro-2-methylphenyl ring being nearly perpendicular to the mean plane of the 2,4-dibora-1,3-di­aza­naphthalene ring. The orientation of the Cr(CO)3 tripod relative to the C6 aromatic ring is such that it is nearly eclipsed in one isomer (2.4° rotation from being eclipsed with C—N, C—Cl and C—H) and slightly twisted (16.2°) from an eclipsed conformation in the other.

Eclipsed conformationAtropisomerbiologyBicyclic moleculeStereochemistryChemistryGeneral MedicineCrystal structurebiology.organism_classificationMedicinal chemistryGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundTetraMoleculeMoietyNaphthaleneActa Crystallographica Section C Crystal Structure Communications
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Thermal 1,6-Electrocyclization Reactions of Acceptor-Substituted 2,3-Divinyl-1H-indoles Yielding Functionalized Carbazoles

1990

Three new synthetic procedures for and thermal 1,6-electrocyclizations of acceptor-substituted 2,3-divinyl-1H-indoles leading to functionalizing carbazoles are described. The scope and limitations as well as some mechanistic aspects of the methodologies are discussed. The key strategies employed include Pd(II)-catalyzed coupling and Wittig procedures.

Electrocyclic reactionBicyclic moleculeChemistryOrganic ChemistryBiochemistryAcceptorCatalysisInorganic ChemistryChemical couplingDrug DiscoveryWittig reactionOrganic chemistryThermal reactionPhysical and Theoretical ChemistryHelvetica Chimica Acta
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