Search results for "Spectroscopy"

showing 10 items of 10293 documents

"Through-space" nuclear spin-spin J(PP) coupling in tetraphosphine ferrocenyl derivatives: a (31)P NMR and X-ray structure correlation study for coor…

2004

Herein, we report on (31)P(31)P solution-phase "through-space" nuclear spin-spin coupling constants (J(PP)) from a novel family of organometallic tetraphosphine nickel and palladium complexes. These J(PP) constants were accurately determined through NMR iterative simulation based on the second-order spectra obtained for the compounds. The corresponding solid-state X-ray structures of the complexes were determined, and the "through-space" P.P distances are reported. Due to the blocked conformation of the species in solution, a qualitative and semiquantitative experimental correlation is obtained, which links the geometric parameters and the intensity of the corresponding P.P coupling constan…

Coupling constantChemistryStereochemistrychemistry.chemical_elementGeneral ChemistryCrystal structureElectronic structureBiochemistryCatalysisCrystallographyColloid and Surface ChemistryX-ray crystallographyMoleculePhosphorus-31 NMR spectroscopySpin (physics)PalladiumJournal of the American Chemical Society
researchProduct

Tracking the time-evolution of the electron distribution function in Copper by femtosecond broadband optical spectroscopy

2019

Multitemperature models are nowadays often used to quantify the ultrafast electron-phonon (boson) relaxations and coupling strengths in advanced quantum solids. To test their applicability and limitations, we perform systematic studies of carrier relaxation dynamics in copper, a prototype system for which the two-temperature model (TTM) was initially considered. Using broadband time-resolved optical spectroscopy, we study the time evolution of the electron distribution function, $f(E)$, over a large range of excitation densities. Following intraband optical excitation, $f(E)$ is found to be athermal over several 100 fs, with a substantial part of the absorbed energy already being transferre…

Coupling constantCondensed Matter - Materials ScienceMaterials scienceTime evolutionGeneral Physics and AstronomyMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesElectron01 natural sciences0103 physical sciencesFemtosecondAtomic physics010306 general physicsSpectroscopyUltrashort pulseExcitationBoson
researchProduct

Nuclear Spin Relaxation in Viscous Liquids: Relaxation Stretching of Single-Particle Probes

2021

Spin-lattice relaxation rates R1(ω,T), probed via high-field and field-cycling nuclear magnetic resonance (NMR), are used to test the validity of frequency-temperature superposition (FTS) for the reorientation dynamics in viscous liquids. For several liquids, FTS is found to apply so that master curves can be generated. The susceptibility spectra are highly similar to those obtained from depolarized light scattering (DLS) and reveal an excess wing. Where FTS works, two approaches are suggested to access the susceptibility: (i) a plot of deuteron R1(T) vs the spin-spin relaxation rate R2(T) and (ii) a plot of R1(T) vs an independently measured reference time τref(T). Using single-frequency s…

Coupling constantCouplingHot TemperatureMagnetic Resonance SpectroscopyMaterials scienceViscosityTemperatureViscous liquidMagnetic Resonance ImagingMolecular physicsLight scatteringSpectral lineSurfaces Coatings and FilmsSuperposition principleDeuteriumMaterials ChemistryRelaxation (physics)Physical and Theoretical ChemistryThe Journal of Physical Chemistry B
researchProduct

“Through-space” nuclear spin–spin couplings in ferrocenyl polyphosphanes and diphosphino cavitands: A new way of gathering structural information in …

2009

Abstract Nuclear magnetic resonance is an invaluable technique for investigating a variety of important issues ranging from the determination of molecular structure to therapeutic medical imaging. In this respect, the indirect nuclear spin–spin coupling involving common nuclei such as 1 H, 13 C or 31 P provides, via the J constant, conclusive data for compound characterization in solution. This electron-mediated nuclear spin coupling is usually regarded as being transmitted by covalently bonded magnetic atoms. However, several experimental and theoretical studies, first focused on constrained organofluorides, and more recently devoted to phosphane ligands highlighted the existence of very i…

Coupling constantCouplingProton010405 organic chemistryStereochemistryChemistryGeneral Chemical EngineeringGeneral Chemistry010402 general chemistry01 natural sciences3. Good health0104 chemical sciencesComputational chemistryIntramolecular forceCalixareneMoleculePhosphorus-31 NMR spectroscopySpin (physics)Comptes Rendus Chimie
researchProduct

1H NMR and IR spectra of methyl dichloropropanoates and butanoates

1981

Abstract Methyl dichloropropanoates and butanoates were synthesized and their 1H NMR and IR spectra were studied. Comparisons were made with the spectral characteristics of corresponding monochlorocompounds. Special attention was given to the elucidation of the characteristic spectral features associated with particular chlorine substitution patterns. The 1H NMR of erythro and threo methyl 2,3-dichlorobutanoates were analyzed using a computer program MAOCON, a modified LAOCOON 3 program. In the spectrum of the threo form the order of the chemical shifts of protons on asymmetric carbons seems to be opposite to that reported in earlier literature. Also vicinal coupling constants J23 were foun…

Coupling constantCrystallographyChemistryStereochemistryChemical shiftOrganic ChemistryDrug DiscoveryProton NMRDiastereomerInfrared spectroscopyBiochemistryVicinalTetrahedron
researchProduct

O Triclusters Revisited: Classical MD and Quantum Cluster Results for Glasses of Composition (Al2O3)2(SiO2).

2005

The (17)O NMR spectrum of CaAl(2)Si(2)O(8) glass shows two types of O sites that are not present in the crystalline material. One of these, with (17)O NMR parameters C(Q) = 2.3 MHz and delta = +20 ppm, has been assigned to a "tricluster" O, a local geometry in which the O is coordinated to three tetrahedrally coordinated atoms, either Al or Si. For crystalline CaAl(4)O(7), a tricluster site (with three Al linkages to O, i.e., OAl(3)) has been characterized experimentally, with a C(Q) of 2.5 MHz and a delta of about +40 ppm. Thus, a C(Q) value of 2.5 MHz or less seems to be a characteristic of such sites, although they may show a range of delta values. However, several different quantum chem…

Coupling constantCrystallographychemistry.chemical_compoundchemistryQuadrupoleAb initioCluster (physics)AS2Calcium aluminosilicateGeneral MedicineNuclear magnetic resonance spectroscopyRing (chemistry)ChemInform
researchProduct

O Triclusters Revisited:  Classical MD and Quantum Cluster Results for Glasses of Composition (Al2O3)2(SiO2)

2006

The (17)O NMR spectrum of CaAl(2)Si(2)O(8) glass shows two types of O sites that are not present in the crystalline material. One of these, with (17)O NMR parameters C(Q) = 2.3 MHz and delta = +20 ppm, has been assigned to a "tricluster" O, a local geometry in which the O is coordinated to three tetrahedrally coordinated atoms, either Al or Si. For crystalline CaAl(4)O(7), a tricluster site (with three Al linkages to O, i.e., OAl(3)) has been characterized experimentally, with a C(Q) of 2.5 MHz and a delta of about +40 ppm. Thus, a C(Q) value of 2.5 MHz or less seems to be a characteristic of such sites, although they may show a range of delta values. However, several different quantum chem…

Coupling constantMaterials scienceAb initioCalcium aluminosilicateNuclear magnetic resonance spectroscopyRing (chemistry)Surfaces Coatings and Filmschemistry.chemical_compoundCrystallographychemistryQuadrupoleMaterials ChemistryAS2Cluster (physics)Physical and Theoretical ChemistryThe Journal of Physical Chemistry B
researchProduct

Conformation of the galactose ring adopted in solution and in crystalline form as determined by experimental and DFT 1H NMR and single-crystal X-ray …

2003

The solution-state conformations of various galactose derivatives were determined by comparison of the experimental (1)H-(1)H vicinal coupling constants to those calculated using density functional theory (DFT) at the B3LYP/cc-pVTZ//B3LYP/6-31G(d,p) level of theory. The agreement between the experimental and calculated vicinal coupling constants for 1,2:3,4-di-O-isopropylidene-alpha-d-galactopyranose was good, thereby confirming an (O)S(2) skew conformation for it and its derivatives on the basis of their similar observed couplings. Single-crystal X-ray analysis of 1,2:3,4-di-O-isopropylidene-6-O-(3,4,6-tri-O-acetyl-2-deoxy-2-N-phthalimido-beta-d-glucopyranosyl)-alpha-d-galactopyranose and …

Coupling constantModels MolecularMagnetic Resonance SpectroscopyStereochemistryChemistryOrganic ChemistryGalactoseNuclear magnetic resonance spectroscopyRing (chemistry)Crystallography X-RaySolutionsCrystallographyX-ray crystallographyProton NMRDensity functional theoryProtonsCrystallizationSingle crystalVicinalThe Journal of organic chemistry
researchProduct

Antimony-121 Mössbauer spectra of organoantimony derivatives containing Sb-Sb bonds

1994

121-Sb Mossbauer data are reported for a number of organoantimony rings and catena-stibanes. These compounds are representative of RSb(Sb)2 and R2SbSb type of coordination, and spectral parameters are compared and discussed in relation to RSbCl2 and R2SbCl systems. Although the trend in isomer shift is similar, the present compounds show slightly less negative isomer shift values together with a remarkable reduction of the quadrupolar coupling constant. A rationalization of the quadrupolar interaction in the above series of compounds appears feasible by using point charge model calculations whose results, in terms of bonding, indicate a large contribution of p-electron density along Sb-Sb b…

Coupling constantNuclear and High Energy PhysicsElectron densityMössbauer effectIsotopeChemistryStable isotope ratiochemistry.chemical_elementCondensed Matter PhysicsAtomic and Molecular Physics and OpticsCrystallographyAntimonyComputational chemistryMössbauer spectroscopyPhysical and Theoretical ChemistryThin filmHyperfine Interactions
researchProduct

Nuclear Spins of the IsomersHg191m−185mDetermined by On-Line Quantum-Beat Spectroscopy

1979

The nuclear spins of the very neutron-deficient $^{191m\ensuremath{-}185m}\mathrm{Hg}$ isomers were measured on line at the mass separator ISO LIDE at CERN using pulsed-laser excitation and observation of the time-resolved quantum beats from selected hyperfine-structure states. The spins of these isomers are with $I=\frac{13}{2}$ equal to those of the long-lived isomers $^{199m\ensuremath{-}193m}\mathrm{Hg}$ already known. The persistence of this spin value for eight isomers is explained by the model of rotation-aligned coupling.

Coupling constantPhysicsAngular momentumQuantum beatsIsotopeSpinsPhysics::Atomic and Molecular ClustersGeneral Physics and AstronomyPhysics::Chemical PhysicsAtomic physicsSpectroscopyHyperfine structureExcitationPhysical Review Letters
researchProduct