Search results for "Effective nuclear charge"

showing 10 items of 128 documents

Kinetic and thermodynamic stability of the group 13 trihydrides.

2009

The kinetic and thermodynamic stabilities of the group 13 hydrides EH(3) (E = B, Al, Ga, In, Tl, E113) are investigated by relativistic density functional and wave function based theories. The unimolecular decomposition of EH(3) --EH + H(2) becomes energetically more favorable going down the Group 13 elements, with the H(2)-abstraction of InH(3), TlH(3), and (E113)H(3) (E113: element with nuclear charge 113) being exothermic. In accordance with the Hammond-Leffler postulate, the activation barrier for the dissociation process decreases accordingly going down the group 13 elements in the periodic table shifting to an early transition state, with activation energies ranging from 88.4 kcal/mol…

Inorganic ChemistryCoupled clusterBoron groupElectronic correlationChemistryThermodynamicsChemical stabilityPhysical and Theoretical ChemistryWave functionKinetic energyDissociation (chemistry)Effective nuclear chargeInorganic chemistry
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Modeling the properties of lanthanoid single-ion magnets using an effective point-charge approach

2012

Herein, we present two geometrical models based on an effective point-charge approach to provide a full description of the lowest sublevels in lanthanoid single ion magnets (SIMs). The first one, named as the Radial Effective Charge (REC) model, evaluates the crystal field effect of spherical ligands, e.g. F(-), Cl(-) or Br(-), by placing the effective charge along the Ln-ligand axes. In this case the REC parameters are obtained fitting high-resolution spectroscopic data for lanthanoid halides. The second model, named as the Lone Pair Effective Charge (LPEC) model, has been developed in order to provide a realistic description of systems in which the lone pairs are not pointing directly tow…

Inorganic ChemistryLanthanideCrystalPoint particleChemistryStereochemistryMagnetField effectLone pairMolecular physicsEffective nuclear chargeIonDalton Transactions
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Molecular anisotropy analysis of single-ion magnets using an effective electrostatic model.

2014

Simple electrostatic models have been shown to successfully rationalize the magnetic properties of mononuclear single molecule magnets based on f-elements and even to predict the direction of the magnetic anisotropy axis in these nanomagnets. In this Article, we go a step forward by showing that these models, conveniently modified to account for the covalency effects, are able to predict not only the easy axis direction but also the three components of the magnetic anisotropy. Thus, by using a lone pair effective charge (LPEC) model we can fully reproduce the angular dependence of the magnetic susceptibility in single crystals of pentamethylcyclopentadienyl-Er-cyclooctatetraene single-ion m…

Inorganic ChemistryMagnetic anisotropyChemistryComputational chemistryMagnetPhysical and Theoretical ChemistryAnisotropyLone pairParametrizationMolecular physicsMagnetic susceptibilityNanomagnetEffective nuclear chargeInorganic chemistry
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Laser spectroscopy of neutron deficient lead and thallium isotopes: Systematics of nuclear radii in the Z = 82 region

1989

Publisher Summary The high sensitivity achievable in laser spectroscopic methods allows the extraction of nuclear quantities even of artificially produced short-lived nuclides far off from nuclear stability. By analyzing the hyperfine structure and the isotope shift magnetic dipole moments, the electric quadrupole moments and the change of the nuclear charge radius can be studied. This chapter describes an experiment that was carried out at the GSI on-line mass separator using collinear fast atomic-beam laser spectroscopy. Radioactive lead and thallium isotopes were produced by bombarding natural tungsten targets with oxygen beams. For the lighter thallium isotopes, a tantalum target was us…

IsotopeNuclear Theorychemistry.chemical_elementEffective nuclear chargeNuclear physicschemistryQuadrupolePhysics::Accelerator PhysicsThalliumNeutronPhysics::Atomic PhysicsNuclideNuclear ExperimentSpectroscopyHyperfine structure
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The mean square nuclear charge radius of

1996

We report on a collinear laser spectroscopy measurement of the nuclear charge radius of (I = 3/2), yielding . Within the experimental accuracy, the N = 20 neutron shell closure has no influence on the charge radii of the calcium isotopes.

Isotopes of calciumPhysicsNuclear and High Energy PhysicsNuclear TheoryShell (structure)NeutronCharge (physics)RadiusAtomic physicsNuclear ExperimentSpectroscopyHyperfine structureEffective nuclear chargeJournal of Physics G: Nuclear and Particle Physics
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Rational Design of Lanthanoid Single-Ion Magnets: Predictive Power of the Theoretical Models

2016

We report two new single‐ion magnets (SIMs) of a family of oxydiacetate lanthanide complexes with D3 symmetry to test the predictive capabilities of complete active space ab initio methods (CASSCF and CASPT2) and the semiempirical radial effective charge (REC) model. Comparison of the theoretical predictions of the energy levels, wave functions and magnetic properties with detailed spectroscopic and magnetic characterisation is used to critically discuss the limitations of these theoretical approaches. The need for spectroscopic information for a reliable description of the properties of lanthanide SIMs is emphasised. SPINMOL ERC-CoG-647301 DECRESIM MAT2014-56143-R CTQ2014-52758-P CTQ2011-2…

LanthanideElectronic structureUNESCO::QUÍMICAAb initioEstructura electrònicaElectronic structure010402 general chemistry01 natural sciences:QUÍMICA [UNESCO]CatalysisEffective nuclear chargeComputational chemistryRare earthsComplete active spaceWave function010405 organic chemistryChemistryOrganic ChemistryGeneral ChemistrySymmetry (physics)Terres rares0104 chemical sciencesImantsMagnetMagnetsAtomic physics
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Two pyrazolylborate dysprosium(III) and neodymium(III) single ion magnets modeled by a Radial Effective Charge approach

2013

Abstract A Radial Effective Charge model based on a point charge approach is applied in order to study the magnetic behavior of two lanthanoid single ion magnets coordinated by pyrazole-based ligands that produce a D3h crystal field. We obtain the lowest-lying magnetic levels and the associated wave functions of Dy(H2BPzMe22)3 (1), and the tricapped NdTp3 (2), where H2BPzMe22 = dihydrobis(dimenthylpyrazolyl)borate and Tp = trispyrazolylborate. Results support the observed SMM behavior.

LanthanideField (physics)Point particleInorganic chemistrychemistry.chemical_element02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesNeodymiumMolecular physicsEffective nuclear charge0104 chemical sciences3. Good healthInorganic ChemistryCrystalchemistryMagnetMaterials ChemistryDysprosiumPhysical and Theoretical Chemistry0210 nano-technologyPolyhedron
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Limiting transport properties of lanthanide and actinide ions in pure water

2003

Summary The limiting transport properties, i.e. the limiting ionic conductivity (λ°) and the limiting diffusion coefficient (D°), of lanthanide and actinide ions at 298.15K have been calculated by means of the microscopic version of the Stokes–Einstein law involving (i) the effective charge and the ionic radius of the ions and (ii) the ion micro-viscosity, i.e. the viscosity of the hydrated water molecules in the vicinity of the ion. The latter quantity was derived from the variation of the dynamic properties of the water molecules in the first hydration shell with the surface charge density of common mono-atomic cations of various charges. The obtained results were found to be consistent w…

LanthanideIonic radiusSolvation shellChemistryChemical physicsInorganic chemistryMoleculeIonic conductivityCharge densityPhysical and Theoretical ChemistryEffective nuclear chargeIonRadiochimica Acta
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Molecular spin qubits based on lanthanide ions encapsulated in cubic polyoxopalladates: design criteria to enhance quantum coherence

2015

The family of cubic polyoxopalladates encapsulating lanthanide ions [LnPd12(AsPh)8O32]5− where Ln = Tb, Dy, Ho, Er and Tm, is magnetically characterised and theoretically described by the Radial Effective Charge (REC) model and a phenomenological crystal-field approach using the full-hamiltonian, in the SIMPRE and CONDON packages respectively. The lack of anisotropy generates an extraordinarily rich energy level structure at low temperatures, which allows us to study how such a structure is affected by lifting the strict cubic symmetry and/or by applying an external magnetic field. In particular, we will explore the possibility of using these cubic Ln complexes as spin-qubits. We will focus…

LanthanideQuantum decoherenceCondensed matter physicsChemistryUNESCO::QUÍMICA02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology:QUÍMICA [UNESCO]01 natural sciencesEffective nuclear charge0104 chemical sciencesIonMagnetic fieldInorganic ChemistryQubit0210 nano-technologySpin (physics)AnisotropyInorganic Chemistry Frontiers
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Modeling the magnetic properties of lanthanide complexes: relationship of the REC parameters with Pauling electronegativity and coordination number

2015

In a previous study, we introduced the Radial Effective Charge (REC) model to study the magnetic properties of lanthanide single ion magnets. Now, we perform an empirical determination of the effective charges (Zi) and radial displacements (Dr) of this model using spectroscopic data. This systematic study allows us to relate Dr and Zi with chemical factors such as the coordination number and the electronegativities of the metal and the donor atoms. This strategy is being used to drastically reduce the number of free parameters in the modeling of the magnetic and spectroscopic properties of f-element complexes. SPINMOL FP7-ERC-247384 ERC-CoG-647301 DECRESIM MAT2011-22785 MAT2014-56143-R CTQ2…

LanthanideSingle ionChemistryCoordination numberUNESCO::QUÍMICA02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesMolecular physics:QUÍMICA [UNESCO]Effective nuclear charge0104 chemical sciencesInorganic ChemistryElectronegativityMetalComputational chemistryvisual_artMagnetvisual_art.visual_art_medium0210 nano-technologyFree parameter
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