Search results for "Atomic orbital"

showing 10 items of 233 documents

NMR chemical shift computations at second-order Møller-Plesset perturbation theory using gauge-including atomic orbitals and Cholesky-decomposed two-…

2021

We report on a formulation and implementation of a scheme to compute NMR shieldings at second-order Moller-Plesset (MP2) perturbation theory using gauge-including atomic orbitals (GIAOs) to ensure gauge-origin independence and Cholesky decomposition (CD) to handle unperturbed as well as perturbed two-electron integrals. We investigate the accuracy of the CD for the derivatives of the two-electron integrals with respect to an external magnetic field as well as for the computed NMR shieldings, before we illustrate the applicability of our CD based GIAO-MP2 scheme in calculations involving up to about one hundred atoms and more than one thousand basis functions.

Chemical Physics (physics.chem-ph)PhysicsChemical shiftMøller–Plesset perturbation theoryFOS: Physical sciencesGeneral Physics and AstronomyBasis functionElectronMagnetic fieldAtomic orbitalQuantum mechanicsPhysics::Atomic and Molecular ClustersPhysical and Theoretical ChemistryPerturbation theoryCholesky decompositionThe Journal of chemical physics
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Thermodynamic stability of stoichiometric LaFeO 3 and BiFeO 3 : a hybrid DFT study

2017

BiFeO3 perovskite attracts great attention due to its multiferroic properties and potential use as a parent material for Bi1−xSrxFeO3−δ and Bi1−xSrxFe1−yCoyO3−δ solid solutions in intermediate temperature cathodes of oxide fuel cells. Another iron-based LaFeO3 perovskite is the end member for well-known solid solutions (La1−xSrxFe1−yCoyO3−δ) used for oxide fuel cells and other electrochemical devices. In this study an ab initio hybrid functional approach was used for the study of the thermodynamic stability of both LaFeO3 and BiFeO3 with respect to decompositions to binary oxides and to elements, as a function of temperature and oxygen pressure. The localized (LCAO) basis sets describing th…

ChemistryAb initioOxideGeneral Physics and AstronomyThermodynamics02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences7. Clean energy0104 chemical sciencesHybrid functionalchemistry.chemical_compoundLinear combination of atomic orbitalsAtomPhysical chemistryChemical stabilityPhysical and Theoretical Chemistry0210 nano-technologyPerovskite (structure)Phase diagramPhysical Chemistry Chemical Physics
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Ab initio study of the electronic and atomic structure of the wolframite-type ZnWO4

2009

Abstract Ab initio quantum chemistry calculations of the structural and electronic properties of monoclinic wolframite-type ZnWO 4 crystal have been performed within the periodic linear combination of atomic orbitals (LCAO) method using six different Hamiltonians, based on density functional theory (DFT) and hybrid Hartree-Fock-DFT theory. The obtained results for optimized structural parameters, band gap and partial density of states are compared with available experimental data, and the best agreement is observed for hybrid Hamiltonians. The calculations show that zinc tungstate is a wide band gap material, with the direct gap about 4.6 eV, whose valence band has largely O 2p character, w…

ChemistryBand gapAb initioGeneral ChemistryElectronic structureCondensed Matter PhysicsQuantum chemistryLinear combination of atomic orbitalsAb initio quantum chemistry methodsPhysics::Atomic and Molecular ClustersMaterials ChemistryDensity functional theoryAtomic physicsMonoclinic crystal systemSolid State Communications
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Theoretical study of the derivative hydrocarbons of biphenylene. I. Electronic spectrum of the biphenylene

1969

The electronic spectrum of biphenylene has been studied theoretically. The investigation is based on the semi-empirical LCAO SCF MO method with various degrees of approximations. The results have been analysed with regard to the following two factors: (a) The difference in effective electronegativity between the carbon atoms in the four-membered ring and the other carbon atoms in the molecule. (b) The inclusion of doubly excited configurations in the description of the π-electronic molecular states. The theory satisfactorily interprets the excitation energies and the nature of the electronic transitions. The predictions are particularly affected by the inclusion of the doubly excited config…

ChemistryBiphenyleneCondensed Matter PhysicsRing (chemistry)Atomic and Molecular Physics and OpticsElectronegativitychemistry.chemical_compoundLinear combination of atomic orbitalsAtomic electron transitionExcited stateMoleculePhysical and Theoretical ChemistryAtomic physicsExcitationInternational Journal of Quantum Chemistry
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Analytic first derivatives for a spin-adapted open-shell coupled cluster theory: Evaluation of first-order electrical properties

2014

An analytic scheme is presented for the evaluation of first derivatives of the energy for a unitary group based spin-adapted coupled cluster (CC) theory, namely, the combinatoric open-shell CC (COSCC) approach within the singles and doubles approximation. The widely used Lagrange multiplier approach is employed for the derivation of an analytical expression for the first derivative of the energy, which in combination with the well-established density-matrix formulation, is used for the computation of first-order electrical properties. Derivations of the spin-adapted lambda equations for determining the Lagrange multipliers and the expressions for the spin-free effective density matrices for…

ChemistryComputationGeneral Physics and AstronomyLambdaDipolesymbols.namesakeCoupled clusterAtomic orbitalQuantum mechanicsUnitary groupLagrange multipliersymbolsPhysical and Theoretical ChemistryAtomic physicsOpen shellThe Journal of Chemical Physics
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Full configuration interaction calculation of BeH adiabatic states.

2008

An all-electron full configuration interaction (FCI) calculation of the adiabatic potential energy curves of some of the lower states of BeH molecule is presented. A moderately large ANO basis set of atomic natural orbitals (ANO) augmented with Rydberg functions has been used in order to describe the valence and Rydberg states and their interactions. The Rydberg set of ANOs has been placed on the Be at all bond distances. So, the basis set can be described as 4s3p2d1f3s2p1d(BeH)+4s4p2d(Be). The dipole moments of several states and transition dipole strengths from the ground state are also reported as a function of the R(Be-H) distance. The position and the number of states involved in sever…

ChemistryConfiguration interactionsGeneral Physics and AstronomyBond lengthsBeryllium compounds ; Bond lengths ; Configuration interactions ; Ground states ; Molecular moments ; Potential energy surfaces ; Rydberg states ; Vibrational statesRydberg statesPotential energyFull configuration interactionGround statesUNESCO::FÍSICA::Química físicaDipolesymbols.namesakeAtomic orbitalBeryllium compoundsPotential energy surfacesRydberg formulasymbolsMolecular momentsVibrational statesPhysical and Theoretical ChemistryAtomic physicsGround stateAdiabatic process:FÍSICA::Química física [UNESCO]Basis setThe Journal of chemical physics
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Orbiting Orbitals: Visualization of Vi-Bronic Motion at a Conical Intersection

2013

The Jahn-Teller (JT) active unpaired electron of single metalloporphyrin radical anions is imaged through scanning tunneling microscopy. It is demonstrated that the electron is delocalized over the porphyrin macrocycle and its topographic image is determined by vibronic motion: the orbital of the electron adiabatically follows the zero-point pseudorotation of skeletal deformations. Transformation of the polar graphs of the observed images allows visualization of the adiabatic vibrational density to which the electron is coupled. The vibronic potential at the conical intersection is visualized and the half-integer angular momentum characteristic of the Berry phase is revealed in the radial f…

ChemistryElectronConical intersectionlaw.inventionDelocalized electronUnpaired electronGeometric phaseAtomic orbitallawPhysics::Atomic and Molecular ClustersPseudorotationPhysical and Theoretical ChemistryScanning tunneling microscopeAtomic physicsta116The Journal of Physical Chemistry A
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Structure, magnetizability, and nuclear magnetic shielding tensors of bis-heteropentalenes. IV. Dihydrophospholophosphole isomers

2005

The geometry of the heteropentalenes formed by two phosphole units has been determined at the DFT level. The magnetic susceptibility and the nuclear magnetic shielding at the nuclei of these systems have also been calculated using gauge-including atomic orbitals and a large Gaussian basis set to achieve near Hartree-Fock estimates. A comparative study of the various isomers, of their flattened analogs, and of the parent phosphole molecule, shows that the [3,4-c] isomer is the most aromatic system in the set considered, assuming diatropicity and degree of planarity as indicators, even if it is the less stable in terms of total molecular energy. Plots of magnetic field-induced current densiti…

ChemistryHeteroatomPhospholeGeneral ChemistryElectronPi bondMolecular physicsMagnetic susceptibilityPlanarity testingComputational Mathematicschemistry.chemical_compoundAtomic orbitalComputational chemistryPhysics::Atomic and Molecular Clustersmagnetizability; nuclear magnetic shieldings; dihydrophospholophosphole isomersMoleculeJournal of Computational Chemistry
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Treatment of scalar-relativistic effects on nuclear magnetic shieldings using a spin-free exact-two-component approach.

2013

A cost-effective treatment of scalar-relativistic effects on nuclear magnetic shieldings based on the spin-free exact-two-component theory in its one-electron variant (SFX2C-1e) is presented. The SFX2C-1e scheme gains its computational efficiency, in comparison to the four-component approach, from a focus on spin-free contributions and from the elimination of the small component. For the calculation of nuclear magnetic shieldings, the separation of spin-free and spin-dependent terms in the parent four-component theory is carried out here for the matrix representation of the Dirac equation in terms of a restricted-magnetically balanced gauge-including atomic orbital basis. The resulting spin…

ChemistryMatrix representationGeneral Physics and Astronomychemistry.chemical_elementIonsymbols.namesakeXenonAtomic orbitalMolybdenum compoundsDirac equationQuantum mechanicssymbolsPhysical and Theoretical ChemistryAtomic physicsHamiltonian (quantum mechanics)Relativistic quantum chemistryThe Journal of chemical physics
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Atomic and electronic structure of both perfect and nanostructured Ni(111) surfaces: First-principles calculations

2011

article i nfo In this study, we perform first principles simulations on both atomically smooth and nanostructured Ni(111) slabs. The latter contains periodically distributed nickel nanoclusters atop a thin metal film gradually growing from adatoms and serving as a promising catalyst. Applying the generalized gradient approximation within the formalism of the density functional theory we compare the atomic and electronic structures of Ni bulk, as well as both perfect and nanostructured (111) surfaces obtained using two different ab initio approaches: (i) the linear combination of atomic orbitals and (ii) the projector augmented plane waves. The most essential inter-atomic forces between the …

ChemistryMetals and AlloysAb initioSurfaces and InterfacesElectronic structureCarbon nanotubeEffective nuclear chargeSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNanoclusterslaw.inventionCondensed Matter::Materials ScienceAb initio quantum chemistry methodsLinear combination of atomic orbitalsChemical physicsComputational chemistrylawPhysics::Atomic and Molecular ClustersMaterials ChemistryDensity functional theoryThin Solid Films
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