Search results for "Carbon-13 NMR"

showing 10 items of 262 documents

Comparative NMR and IR spectral, X-ray structural and theoretical studies of eight 6-arylidenedibenzo[b,e]thiepin-11-one-5,5-dioxides

2007

Abstract Eight 6-arylidenedibenzo[b,e]thiepin-11-one-5,5-dioxides are characterized by NMR and IR spectroscopy. Single crystal X-ray structures for three congeners are reported. In addition, the transmission of substituent effects in conjugated double bond system of 6-arylidenedibenzo[b,e]thiepin-11-one-5,5-dioxide framework has been evaluated by calculating the correlations between selected 13C NMR chemical shifts and IR stretching wave numbers and Hammett constants of the substituents locating in the phenyl ring of the arylidene moiety.

Chemical shiftOrganic ChemistrySubstituentInfrared spectroscopyCarbon-13 NMRRing (chemistry)Analytical ChemistryInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryComputational chemistryProton NMRMoietySingle crystalSpectroscopyJournal of Molecular Structure
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Nitrogen-15 NMR Studies on Hydrazines. 2— Substituent Effect Analysis inortho-Substituted Phenylhydrazines and Anilines

1996

15N and 13C NMR spectra of some ortho-substituted phenylhydrazines were measured at natural isotope abundance in DMSO-d6 solutions. The substituent present exerts a larger effect on the chemical shift of the nitrogen atom directly bound to the aromatic ring (N-1), the second one (N-2) showing an attenuated trend of similar sign. Contrary to what observed for para and meta isomers, the cross-correlation between N-1 and N-2 SCS values of ortho-substituted phenylhydrazines is not satisfactory; on the other hand, N-1 SCSs show a reasonably good linear regression with the σR− constants. As expected, no correlation was found between N-1 and C-1 or H-1 SCS values. Correlations between 13C and 15N …

Chemical shiftPhenylhydrazinesSubstituentchemistry.chemical_elementNatural abundanceGeneral ChemistryCarbon-13 NMRRing (chemistry)PhotochemistryNitrogenMedicinal chemistrySpectral linechemistry.chemical_compoundchemistryGeneral Materials ScienceMagnetic Resonance in Chemistry
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NMR studies of benzoannulation in lithium, sodium and potassium ortho-formylphenolates

2010

Abstract Lithium, sodium and potassium derivatives of (benzo)salicylaldehydes have been prepared and characterized by 1 H and 13 C NMR in order to see how the metal cation and benzoannulation affect spectral parameters. There is no qualitative effect of the alkali metal atom in the compounds studied (from this point of view salicylaldehydes remind β-diketones). On the other hand, 1 H chemical shifts of the hydroxyl and formyl protons and 13 C chemical shifts of C2 (bearing OX, X = H, Li, Na or K) and of that the formyl carbon show the most significant variations being the best indicators of aromatic character of the six-membered quasi-ring of salicylaldehyde. In contrast, C1 (bearing formyl…

Chemical shiftSodiumPotassiumOrganic ChemistryInorganic chemistrychemistry.chemical_elementCarbon-13 NMRAlkali metalMedicinal chemistryAnalytical ChemistryInorganic Chemistrychemistry.chemical_compoundSalicylaldehydechemistryMoietyLithiumSpectroscopyJournal of Molecular Structure
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ChemInform Abstract: Methylium Ions with OPV Chains - New NIR Dyes.

2010

Carbinols, which contain three OPV chains, were generated in convergent syntheses. The extension of the conjugation leads to a bathochromic effect that shifts the absorption from the UV into the visible region. The carbinol series has a convergence limit of the absorption at λmax = 415 nm. The corresponding carbenium ions exhibit a stronger bathochromic shift with the increasing number of repeating units in each chain. Thus, NIR dyes were obtained which show a convergence limit at λmax = 879 nm. The charge distribution in the ground state of the carbocations is discussed on the basis of 13C NMR spectroscopic data.

ChemistryBathochromic shiftCharge densityGeneral MedicineCarbon-13 NMRCarbocationAbsorption (chemistry)Ground statePhotochemistryIonChemInform
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13C-Decoupled J-Coupling Spectroscopy Using Two-Dimensional Nuclear Magnetic Resonance at Zero-Field

2017

We present a two-dimensional method for obtaining 13C-decoupled, 1H-coupled nuclear magnetic resonance (NMR) spectra in zero magnetic field using coherent spin-decoupling. The result is a spectrum determined only by the proton–proton J-coupling network. Detection of NMR signals in zero magnetic field requires at least two different nuclear spin species, but the proton J-spectrum is independent of isotopomer, thus potentially simplifying spectra and thereby improving the analytical capabilities of zero-field NMR. The protocol does not rely on a difference in Larmor frequency between the coupled nuclei, allowing for the direct determination of J-coupling constants between chemically equivalen…

ChemistryCarbon-13 NMR satelliteRelaxation (NMR)Carbon-13 NMR010402 general chemistryJ-coupling01 natural sciences0104 chemical sciencesFree induction decayNuclear magnetic resonance0103 physical sciencesSpin echoGeneral Materials SciencePhysical and Theoretical Chemistry010306 general physicsTwo-dimensional nuclear magnetic resonance spectroscopyEarth's field NMRThe Journal of Physical Chemistry Letters
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1982

ChemistryCarbon-13 NMRPhotochemistryLight scatteringPolydiacetylenesDie Makromolekulare Chemie, Rapid Communications
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Multinuclear Magnetic Resonance Study of 2,4,6-Triarylpyridines, 1-Methyl-2,4,6-Triarylpyridinium, and 2,4,6-Triarylpyrylium Cations

1995

Abstract The H, 13C, 15N, and 19F NMR spectra of 2,4,6-triarylpyridines, 1-methyl-2,4,6-triarylpyridinium and 2,4,6-triarylpyrylium perchlorates have been studied. The H NMR signals of protons 3(5) in the heteroaromatic ring are deshielded due to the polarization of C-H bonds caused by delocalization of the positive charge in pyridinium and pyrylium cations. Generally, conformational and structural variations affect the 13C NMR chemical shifts of all carbons in the heteroaromatic ring. Those of carbons 3(5) can best be related to the electron-donating or electron-accepting ability of substituents. However, both electronic character of substituents and charge of heteroatom itself are needed …

ChemistryChemical shiftHeteroatomSubstituentFluorine-19 NMRCarbon-13 NMRAtomic and Molecular Physics and OpticsAnalytical Chemistrychemistry.chemical_compoundCrystallographyProton NMRMoleculeOrganic chemistryPyridiniumSpectroscopySpectroscopy Letters
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1H, 13C NMR spectral and single crystal structural studies of toxaphene congeners. Quantum chemical calculations for preferred conformers of 2,5-endo…

2005

Abstract The 1H and 13C NMR chemical shifts for six toxaphene congeners: 2-exo,3-endo,6-exo,8,9,10-hexachloro- (1), 2-exo,3-endo,5-exo,9,9,10,10-heptachloro- (2), 2-exo,3-endo,6-exo,8,9,10,10-heptachloro- (3), 2-exo,3-endo,5-exo,6-endo,8,9,10-heptachloro- (4), 2-exo,3-endo,5-exo,6-endo,8,9,9,10-octachlorobornane (5) and 2,5-endo,6-exo,8,9,9,10,10-octachloro-2-bornene (6) are reported. Their chemical shift assignments have been obtained by means of Pulsed Field Gradient (PFG) Double Quantum Filtered (DQF) 1H,1H correlation spectroscopy (COSY), PFG 1H,13C Heteronuclear Multiple Quantum Coherence (HMQC) and PFG 1H,13C Heteronuclear Multiple Bond Correlation (HMBC) experiments. A single crystal…

ChemistryChemical shiftOrganic ChemistryAb initioCarbon-13 NMRAnalytical ChemistryInorganic ChemistryHeteronuclear moleculeComputational chemistryPulsed field gradientSingle crystalConformational isomerismTwo-dimensional nuclear magnetic resonance spectroscopySpectroscopyJournal of Molecular Structure
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Comparative multinuclear magnetic resonance spectroscopic study of transition metal (Cr, W and Mn) mesitylene tricarbonyls and transition metal (Ru a…

1993

Abstract Three mononuclear 1,3,5-trimethylbenzene (mesitylene) carbonyl transition metal complexes, mesitylene tricarbonyl chromium, (CH 3 ) 3 C 6 H 3 Cr(CO) 3 ( 1 ), mesitylene tricarbonyl tungsten, (CH 3 ) 3 C 6 H 3 W(CO) 3 ( 2 ), mesitylene tricarbonyl manganese tetra-fluoroborate, [(CH 3 ) 3 C 6 H 3 Mn(CO) 3 ]BF 4 ( 3 ); and three clusters, mesitylene nonacarbonyl tetracobalt, (CH 3 ) 3 C 6 H 3 Co 4 (CO) 9 ( 4 ), mesitylene carbido tetradecacarbonyl hexaruthenium, (CH 3 ) 3 C 6 H 3 Ru 6 C(CO) 14 ( 5 ) and carbido heptadecacarbonyl hexaruthenium, Ru 6 C(CO) 17 ( 6 ), have been studied by means of 1 H, 13 C and natural abundance 17 O NMR spectroscopy. Generally, the 1 H and 13 C NMR chemi…

ChemistryChemical shiftOrganic ChemistryInorganic chemistrychemistry.chemical_elementManganeseNuclear magnetic resonance spectroscopyCarbon-13 NMRBiochemistryInorganic ChemistryMetalchemistry.chemical_compoundChromiumCrystallographyTransition metalvisual_artMaterials Chemistryvisual_art.visual_art_mediumPhysical and Theoretical ChemistryMesityleneJournal of Organometallic Chemistry
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Comparison of epimeric methyl lithocholate and methyl iso-lithocholate molecules: single crystal X-ray structure of methyl lithocholate, ab initio HF…

2003

Abstract 13 C NMR chemical shifts have been measured and assigned for epimeric methyl 3α/β-hydroxy-5β-cholan-24-oates (methyl lithocholate [3α-OH epimer] and methyl iso-lithocholate [3β-OH epimer]). Their molecular dynamics simulations suggest that for both epimers there exists two predominant gas phase conformations, which have been further forwarded for ab initio/HF optimizations and DFT/GIAO based 13 C NMR chemical shift calculations. Excellent linear relationships have been observed between experimental and calculated 13 C NMR chemical shifts for both epimers. For methyl lithocholate (MeLC), the other minimum energy conformation equates very well with the single crystal X-ray structure …

ChemistryChemical shiftOrganic ChemistryIntermolecular forceAb initioCarbon-13 NMRAnalytical ChemistryInorganic ChemistryCrystallographyComputational chemistryMoleculeOrthorhombic crystal systemEpimerSingle crystalSpectroscopyJournal of Molecular Structure
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