0000000000335993

AUTHOR

Gordon Kearly

showing 4 related works from this author

Anisotropic exchange coupling in the Keggin derivative K8[Co2(D2O)(W11O39)] · n D2O

1998

Abstract 20 g of the fully deuterated title compound have been prepared in polycrystalline form and investigated by inelastic neutron scattering using both thermal and cold neutrons. Magnetic dimer excitations were observed and the energy-splitting pattern resulting from the exchange coupling within the Co 2+ dimer was determined. The coupling is highly anisotropic with the parameter values J =−2.24 meV and η =0.33 based on the effective coupling Hamiltonian H =−2J[S 1z S 2z +η(S 1x S 2x +S 1y S 2y )] . The anisotropy results mainly from the single-ion anisotropy of the Co 2+ ion in the distorted octahedral coordination.

DimerGeneral Physics and AstronomyInelastic neutron scatteringIonchemistry.chemical_compoundCrystallographysymbols.namesakechemistryDeuteriumOctahedronsymbolsNeutronPhysical and Theoretical ChemistryAnisotropyHamiltonian (quantum mechanics)Chemical Physics Letters
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Magnetic Excitations in Polyoxometalate Clusters Observed by Inelastic Neutron Scattering:  Evidence for Ferromagnetic Exchange Interactions and Spin…

1999

The ground-state properties of the tetranuclear Ni2+ cluster [Ni4(H2O)2(PW9O34)2]10- were investigated by combining magnetic susceptibility and magnetization measurements with a detailed inelastic neutron scattering (INS) study on a fully deuterated sample of K6Na4[Ni4(H2O)2(PW9O34)2]·24H2O. The temperature dependence of the magnetic susceptibility indicates a ferromagnetic coupling of the four constituent Ni2+ ions (s = 1), and a low-temperature magnetization study provides the magnitude of the S = 4 ground-multiplet splitting due to the single-ion anisotropy of the Ni2+ ions. Besides a more direct and precise determination of the anisotropic S = 4 ground-multiplet splitting, INS enabled t…

ChemistryGeneral ChemistryBiochemistryMolecular physicsMagnetic susceptibilityCatalysisInelastic neutron scatteringCrystallographyMagnetizationColloid and Surface ChemistryDeuteriumFerromagnetismExcited stateCondensed Matter::Strongly Correlated ElectronsSpin (physics)AnisotropyJournal of the American Chemical Society
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Magnetic Excitations in Polyoxometalate Clusters Observed by Inelastic Neutron Scattering:  Evidence for Anisotropic Ferromagnetic Exchange Interacti…

1999

The ground-state properties of the tetranuclear Co2+ cluster [Co4(H2O)2(PW9O34)2]10- were investigated by combining specific heat, magnetic susceptibility, and magnetization measurements with a detailed inelastic neutron scattering (INS) study on a fully deuterated sample of K10[Co4(H2O)2(PW9O34)2]·22H2O. As a result of the single ion anisotropy of the octahedral Co2+, the appropriate exchange Hamiltonian of the Co4 spin cluster is anisotropic. INS turns out to be essential for the determination of energy splittings in the ground state resulting from the coupling. Besides the energy pattern, INS provides information about the wave functions of the split ground-state components of the spin c…

ChemistryGeneral ChemistryBiochemistryMagnetic susceptibilityMolecular physicsCatalysisInelastic neutron scatteringMagnetizationsymbols.namesakeColloid and Surface ChemistryFerromagnetismsymbolsCluster (physics)Hamiltonian (quantum mechanics)AnisotropyGround stateJournal of the American Chemical Society
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Magnetic Excitations in Tetrameric Clusters of Polyoxometalates Observed by Inelastic Neutron Scattering. Evidence for Anisotropic Exchange Interacti…

1997

Magnetic excitations in tetranuclear clusters of exchange-coupled metal ions encapsulated by polyoxotungstate ligands (1) have been observed by inelastic neutron scattering (INS) in the salts K10[M4(H2O)2(PW9O34)2]·nH2O, where M2+ = Mn, Co, and Ni. INS provides a much deeper and more detailed insight into the nature of the magnetic coupling in these clusters than bulk techniques. In particular, anisotropic exchange interactions are evidenced in the ferromagnetic Co4 cluster.

Metal ions in aqueous solutionchemistry.chemical_elementInductive couplingInelastic neutron scatteringInorganic ChemistryCrystallographychemistryFerromagnetismChemical physicsCluster (physics)Condensed Matter::Strongly Correlated ElectronsPhysical and Theoretical ChemistryAnisotropyCobaltInorganic chemistry
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