Search results for " NMR spectroscopy"

showing 10 items of 70 documents

Additional Proof for the Structure of the New Flavone Galangustin (Bucegin) Obtained by 13C-NMR Spectroscopy

2010

Crystallography13c nmr spectroscopyChemistryGeneral ChemistryBulletin des Sociétés Chimiques Belges
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3-(4-Fluorophenyl)-1-methyl-4-(4-pyridyl)quinolin-2(1H)-one

2007

The title compound, C21H15FN2O, was synthesized in the course of our studies of p38 mitogen-activated protein kinase inhibitors. It has been investigated by 1H and 13C NMR spectroscopy and was proven by X-ray crystallographic analysis to be the N-methyl rather than the O-methyl isomer. In the crystal structure, a three-dimensional network is formed consisting of quinolinone aromatic stacking inter­actions and weak C—H⋯O and C—H⋯N hydrogen bonds.

Crystallography13c nmr spectroscopyHydrogen bondStereochemistryChemistryStackingGeneral Materials ScienceGeneral ChemistryCrystal structureCondensed Matter PhysicsProtein kinase AActa Crystallographica Section E Structure Reports Online
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Tetranitroresorcin[4]arene: synthesis and structure of a new stereoisomer

2009

The direct reaction between 2-nitroresorcinol and acetaldehyde in alkaline medium yields tetranitro-C1-resorcin[4]arene in a moderate 8.2% overall yield which was characterized by single crystal X-ray crystallography, 1H NMR spectroscopy and electrospray ionization mass spectrometry (ESI-MS). In solution and in the solid state, the product adopts a unique, thermally stable and unprecedented rcct-boat conformation.

Crystallography1h nmr spectroscopychemistry.chemical_compoundchemistryYield (chemistry)Electrospray ionizationOrganic ChemistryDrug DiscoverySolid-stateAcetaldehydeDirect reactionBiochemistrySingle crystalTetrahedron Letters
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Preparation and structural studies on diorganotin(IV) complexes of N-nitroso-N-phenylhydroxylaminates

2007

Abstract Diorganotin(IV)-complexes of the N -nitroso- N -phenylhydroxylaminates (hereinafter cupf), Et 2 Sn(cupf) 2 ( 1 ), Bu 2 Sn(cupf) 2 ( 2 ), {[Bu 2 Sn(cupf)] 2 O} 2 ( 3 ), t -Bu 2 Sn(cupf) 2 ( 4 ) and Oc 2 Sn(cupf) 2 ( 5 , 6 ) were prepared and characterised by FT-IR and Mossbauer spectroscopic measurements. The binding modes of the ligand were identified by FT-IR spectroscopy, and it was found that the ligand is coordinated in chelating or bridging mode to the organotin(IV) center. The 119 Sn Mossbauer and FT-IR studies support the formation of trans -O h ( 1 – 6 ) structures. The X-ray diffraction analysis of 4 revealed that the tin centre is in a skew-trapezoidal geometry defined by…

CupferronChemistryLigand1HOrganic Chemistrychemistry.chemical_elementNitrosoBiochemistryX-ray diffractionFT-IRMossbauerInorganic ChemistryCrystallographychemistry.chemical_compound13C and 119Sn NMR spectroscopyMössbauer spectroscopyX-ray crystallographyMaterials ChemistryCupferronChelationPhysical and Theoretical ChemistryTinSpectroscopyDiorganotin(IV)Journal of Organometallic Chemistry
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Phosphorus NMR as a tool to study mineralization of organophosphonates—The ability of Spirulina spp. to degrade glyphosate

2007

Abstract A commercially available mixed culture of Spirulina spp. exhibited a remarkable ability to degrade the widely used organophosphorus herbicide glyphosate, that served as sole source of either phosphorus or nitrogen for cyanobacterial growth. 31P NMR analysis of spent media appeared to be an effective and simple technique to follow disappearance of the phosphonate and release of inorganic phosphate in biodegradation process(es).

CyanobacteriabiologyBioengineeringMineralization (soil science)Spirulina sppBiodegradationbiology.organism_classificationApplied Microbiology and BiotechnologyBiochemistryPhosphonatebiodegradationchemistry.chemical_compoundBiochemistrychemistryglyphosateEnvironmental chemistryGlyphosate31P NMROrganophosphonatesPhosphorus-31 NMR spectroscopy31 P NMRSpirulina spp.Glyphosate; Biodegradation; 31P NMR; Spirulina spp.BacteriaBiotechnologyEnzyme and Microbial Technology
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Structure of SNX9 SH3 in complex with a viral ligand reveals the molecular basis of its unique specificity for alanine-containing class I SH3 motifs

2021

Class I SH3 domain-binding motifs generally comply with the consensus sequence [R/K]x0PxxP, the hydrophobic residue 0 being proline or leucine. We have studied the unusual 0 = Ala-specificity of SNX9 SH3 by determining its complex structure with a peptide present in eastern equine encephalitis virus (EEEV) nsP3. The structure revealed the length and composition of the n-Src loop as important factors determining specificity. We also compared the affinities of EEEV nsP3 peptide, its mutants, and cellular ligands to SNX9 SH3. These data suggest that nsP3 has evolved to minimize reduction of conformational entropy upon binding, hence acquiring stronger affinity, enabling takeover of SNX9. The R…

DYNAMICSPROLINE-RICH PEPTIDESviruksetPROTEINSvirusesHTLV-1 GagLigandsEVOLUTIONARY CONSERVATIONalfaviruksetsrc Homology DomainsHIGH-AFFINITYretroviruksetDOMAINStructural BiologyBINDINGAnimalsHorsesMolecular Biologysoluviestintä11832 Microbiology and virologyAlanineBinding SitesPXXP MOTIFSisothermal titration calorimetrySH3solution NMR spectroscopyEEEV nsP3HIV-11182 Biochemistry cell and molecular biologyproteiinitCHEMICAL-SHIFTS3111 BiomedicinePeptidesSNX9Protein Binding
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Ruthenium Metallodendrimers Based on Nitrile‐Functionalized Poly(alkylidene imine)s

2005

The preparation of the first- and second-generation of nitrile-functionalized poly(alkylidene imine) dendrimers with the organometallic ruthenium complex [Ru(η5-C5H5)(PPh3)2Cl] peripherally attached is described. The reaction of N,N′-bis(cyanomethyl)piperazine (1), N,N′-bis[N′′,N′′′-bis(cyanoethyl)aminoethyl]piperazine (2), or N,N,N′,N′-tetrakis(cyanoethyl)ethylenediamine (3) with [Ru(η5-C5H5)(PPh3)2Cl] (4) in the presence of TlPF6 gives the new air-stable ruthenium metallodendrimers 5, 6, and 7, respectively. These stable metallodendrimers are easily prepared and represent a novel quantitative method to solidify and chromatographically purify the otherwise semi-liquid nitrile-functionalize…

DendrimersNitrileIminechemistry.chemical_elementEthylenediamineSandwich complexes.Mass spectrometryRutheniumRutheniumInorganic ChemistryFaculdade de Ciências Exatas e da Engenhariachemistry.chemical_compoundPiperazineN ligandschemistryDendrimerPolymer chemistryOrganic chemistry31p nmr spectroscopyEuropean Journal of Inorganic Chemistry
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1H, 13C and 17O NMR spectral study of chlorinated 3,4-dihydroxybenzaldehydes (protocatechualdehydes)

1995

Abstract Chlorinated 3,4-dihydroxybenzaldehydes have been studied by means of 1 H, 13 C and 17 O NMR spectroscopy. The 1 H and 13 C NMR spectral assignments are based on 2-dimensional 13 C- 1 H chemical shift correlation spectroscopy (COSY). The 17 O NMR measurements at natural isotope content in organic solvents are problematic owing to the poor solubility of the compounds and/or broadness of the resonance lines. In aqueous alkaline solutions, however, all protocatechualdehydes exhibit “easy-to-detect” 17 O NMR spectral characteristics. The 17 O NMR chemical shifts in the range of 140–480 p.p.m. are interpreted as arising from the different canonical structures of formyl substituted phenol…

Deuterium NMRChemistryCarbon-13 NMR satelliteAnalytical chemistryNuclear magnetic resonance spectroscopyNuclear magnetic resonance crystallographyFluorine-19 NMRCarbon-13 NMRAtomic and Molecular Physics and OpticsAnalytical ChemistryProton NMRPhysical chemistryPhosphorus-31 NMR spectroscopyInstrumentationSpectroscopySpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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13C and15N NMR study of substituted 1,2,4-triazines

1995

13C and 15N NMR spectra of eight substituted 1,2,4-triazines were measured and assigned. The assignments of the 13C NMR spectra were based on the substituent chemical shifts and nJ(C,H) coupling constants. 15N NMR chemical shifts generally showing well separated ranges were assigned by the proton coupled 15N NMR spectra. 15N NMR chemical shifts of N-4 in 3- and 5-methoxy or -thiomethyl-substituted 1,2,4-triazines were found to be related significantly (confidence level >99%) with the π-charge at N-4 calculated by a semi-empirical molecular orbital (AM1) procedure. For the 15N NMR chemical shifts of N-1 and N-2, no reliable correlations with the molecular electronic properties such as AM1 π-…

Deuterium NMRChemistryCarbon-13 NMR satelliteAnalytical chemistryProton NMRPhysical chemistryGeneral Materials ScienceTransverse relaxation-optimized spectroscopyPhosphorus-31 NMR spectroscopyGeneral ChemistryNuclear magnetic resonance spectroscopyFluorine-19 NMRCarbon-13 NMRMagnetic Resonance in Chemistry
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?-Phenylsulfonyl-N-arylacetamides (?-phenylsulfonylacetanilides):1H,13C and15N NMR spectral characterization

2000

Deuterium NMRChemistryNMR spectroscopy of stereoisomersCarbon-13 NMR satelliteAnalytical chemistryProton NMRPhysical chemistryGeneral Materials SciencePhosphorus-31 NMR spectroscopyTransverse relaxation-optimized spectroscopyGeneral ChemistryFluorine-19 NMRCarbon-13 NMRMagnetic Resonance in Chemistry
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