Search results for "CCSD"

showing 10 items of 13 documents

The CCSD(T) model with Cholesky decomposition of orbital energy denominators

2010

A new implementation of the coupled cluster singles and doubles with approximate triples correction method [CCSD(T)] using Cholesky decomposition of the orbital energy denominators is described. The new algorithm reduces the scaling of CCSD(T) from N-7 to N-6, where N is the number of orbitals. The Cholesky decomposition is carried out using simple analytical expressions that allow us to evaluate a priori the order in which the decomposition should be carried out and to obtain the relevant parts of the vectors whenever needed in the calculation. Several benchmarks have been carried out comparing the performance of the conventional and Cholesky CCSD(T) implementations. The Cholesky implement…

Atomic and Molecular Physics and Opticorbital energy denominatorT-modelreduced scalingCondensed Matter PhysicCondensed Matter PhysicsAtomic and Molecular Physics and OpticsSpecific orbital energyCoupled clusterAtomic orbitalComputational chemistryDecomposition (computer science)Applied mathematicsA priori and a posterioriCCSD(T)Physical and Theoretical ChemistryCholesky decompositionScalingMathematicsCholesky decompositionInternational Journal of Quantum Chemistry
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Potential models for the simulation of methane adsorption on graphene: development and CCSD(T) benchmarks

2018

Different force fields for the graphene–CH4 system are proposed including pseudo-atom and full atomistic models. Furthermore, different charge schemes are tested to evaluate the electrostatic interaction for the CH4 dimer. The interaction parameters are optimized by fitting to interaction energies at the DFT level, which were themselves benchmarked against CCSD(T) calculations. The potentials obtained with both the pseudo-atom and full atomistic approaches describe accurately enough the average interaction in the methane dimer as well as in the graphene–methane system. Moreover, the atom–atom potentials also correctly provide the energies associated with different orientations of the molecu…

CCSD calculationsPotential modelsUNESCO::QUÍMICADimerGeneral Physics and AstronomyThermodynamics02 engineering and technology010402 general chemistry:QUÍMICA [UNESCO]7. Clean energy01 natural sciencesStability (probability)MethaneCCSD calculations Potential models methane adsorptionlaw.inventionchemistry.chemical_compoundlawPhysics::Atomic and Molecular ClustersMoleculePhysics::Chemical PhysicsPhysical and Theoretical ChemistryBond energymethane adsorptionCondensed Matter::Quantum GasesPhysicsGrapheneCharge (physics)Interaction energy021001 nanoscience & nanotechnology0104 chemical scienceschemistry0210 nano-technologyPhysical Chemistry Chemical Physics
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Prediction of water's isotropic nuclear shieldings and indirect nuclear spin–spin coupling constants (SSCCs) using correlation‐consistent and polariz…

2009

Density functional theory (DFT) was used to estimate water's isotropic nuclear shieldings and indirect nuclear spin-spin coupling constants (SSCCs) in the Kohn-Sham (KS) complete basis set (CBS) limit. Correlation-consistent cc-pVxZ and cc-pCVxZ (x = D, T, Q, 5, and 6), and their modified versions (ccJ-pVxZ, unc-ccJ-pVxZ, and aug-cc-pVTZ-J) and polarization-consistent pc-n and pcJ-n (n = 0, 1, 2, 3, and 4) basis sets were used, and the results fitted with a simple mathematical formula. The performance of over 20 studied density functionals was assessed from comparison with the experiment. The agreement between the CBS DFT-predicted isotropic shieldings, spin-spin values, and the experimenta…

Coupling constantSOPPA(CCSD)Condensed matter physicsChemistryIsotropywaterKohn–Sham equationsPropagatorspin–spin coupling constantsGeneral ChemistryPolarization (waves)DFT‐NMRnuclear isotropic shieldingsSSCCSOPPAGeneral Materials ScienceDensity functional theoryAtomic physicscomplete basis set limitSpin (physics)Basis setMagnetic Resonance in Chemistry
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Molecular equilibrium structures from experimental rotational constants and calculated vibration–rotation interaction constants

2002

A detailed study is carried out of the accuracy of molecular equilibrium geometries obtained from least-squares fits involving experimental rotational constants B(0) and sums of ab initio vibration-rotation interaction constants alpha(r)(B). The vibration-rotation interaction constants have been calculated for 18 single-configuration dominated molecules containing hydrogen and first-row atoms at various standard levels of ab initio theory. Comparisons with the experimental data and tests for the internal consistency of the calculations show that the equilibrium structures generated using Hartree-Fock vibration-rotation interaction constants have an accuracy similar to that obtained by a dir…

FREQUENCIESChemistryGAUSSIAN-BASIS SETSAb initioGeneral Physics and AstronomyDiatomic moleculeSTATEBORONBond lengthVibrationHOFMETHANEMolecular geometryCCSD(T) 2ND DERIVATIVESAb initio quantum chemistry methodsACIDWAVE-FUNCTIONSPhysics::Atomic and Molecular ClustersMoleculeQUARTIC FORCE-FIELDPhysics::Chemical PhysicsPhysical and Theoretical ChemistryAtomic physicsRotation (mathematics)The Journal of Chemical Physics
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On novel magnetic probe for fullerene characterization: Theoretical studies on NMR parameters of free and confined in fullerenes HD and H2 molecules

2015

Chemical characterization and separation of individual fullerenes from a raw reaction mixture need new and efficient tools, including rapid spectroscopic techniques. Recent "molecular surgery" synthesis of endohedral complexes of fullerenes with selected atoms and small molecules has opened a new path for experimental and theoretical studies on structural and spectroscopic properties of these molecular systems. Among them are fullerenes with molecular hydrogen confined within a nanoscale cavity. In this work we report on quantum-chemical prediction of nuclear magnetic shielding (and chemical shift) and indirect spin-spin coupling constant in free HD and H2 molecules, as well as models of co…

Models MolecularMagnetic Resonance SpectroscopyFullereneHydrogenchemistry.chemical_element010402 general chemistry01 natural sciencesDFTComputational chemistryHD molecule0103 physical sciencesPhysics::Atomic and Molecular ClustersMaterials ChemistryMoleculeCCSD(T)Physical and Theoretical ChemistrySpectroscopyCoupling constant010304 chemical physicsfullereneBenzeneNuclear magnetic resonance spectroscopyComputer Graphics and Computer-Aided DesignSmall molecule0104 chemical sciencesCoupled clusterModels ChemicalchemistryChemical physicsconstansAnisotropyQuantum TheoryDensity functional theoryFullerenesindirect nuclear spin–spin couplingHydrogenJournal of Molecular Graphics and Modelling
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Performance of polarization-consistent vs. correlation-consistent basis sets for CCSD(T) prediction of water dimer interaction energy

2019

Abstract Detailed study of Jensen’s polarization-consistent vs. Dunning’s correlation-consistent basis set families performance on the extrapolation of raw and counterpoise-corrected interaction energies of water dimer using coupled cluster with single, double, and perturbative correction for connected triple excitations (CCSD(T)) in the complete basis set (CBS) limit are reported. Both 3-parameter exponential and 2-parameter inverse-power fits vs. the cardinal number of basis set, as well as the number of basis functions were analyzed and compared with one of the most extensive CCSD(T) results reported recently. The obtained results for both Jensen- and Dunning-type basis sets underestimat…

Water dimerPolarized-consistentExtrapolationBasis functionWater dimer010402 general chemistry01 natural sciencesCatalysisCBSInorganic ChemistryFitting formula0103 physical sciencesCCSD(T)Statistical physicsPhysical and Theoretical ChemistryBasis setMathematics010304 chemical physicsOrganic ChemistryInteraction energyCorrelation-consistent0104 chemical sciencesComputer Science ApplicationsExponential functionCoupled clusterComputational Theory and MathematicsBasis setsCounterpoiseJournal of Molecular Modeling
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CasuHal : HAL Open Access Repository Users Group

2018

CasuHal is a team of volunteers, gathered into a non-profit organisation. Its purpose is to foster exchanges and communication among its 270+ members, to help them understand and take ownership of the HAL platform, and to propose the functional developments needed for a full institutional use.

[SHS.INFO]Humanities and Social Sciences/Library and information sciencesCCSD[SHS.INFO] Humanities and Social Sciences/Library and information sciencesCasuHalHALUsers groupScience ouverteAssociationOpen AccessArchive ouverteOpen ScienceLibre accèsCentre pour la communication scientifique directeOpen Access RepositoryFranceClub utilisateurs
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From CCSD(T)/aug‐cc‐pVTZ‐J to CCSD(T) complete basis set limit isotropic nuclear magnetic shieldings via affordable DFT/CBS calculations

2011

It is shown that a linear correlation exists between nuclear shielding constants for nine small inorganic and organic molecules (N2, CO, CO2, NH3, CH4, C2H2, C2H4, C2H6 and C6H6) calculated with 47 methods (42 DFT methods, RHF, MP2, SOPPA, SOPPA(CCSD), CCSD(T)) and the aug‐cc‐pVTZ‐J basis set and corresponding complete basis set results, estimated from calculations with the family of polarization‐consistent pcS‐n basis sets. This implies that the remaining basis set error of the aug‐cc‐pVTZ‐J basis set is very similar in DFT and CCSD(T) calculations. As the aug‐cc‐pVTZ‐J basis set is significantly smaller, CCSD(T)/aug‐cc‐pVTZ‐J calculations allow in combination with affordable DFT/pcS‐n com…

aug‐cc‐pVTZ‐Jsotropic nuclear magnetic shieldingCCSD(T)DFTCBSMagnetic Resonance in Chemistry
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DLPNO-CCSD(T) scaled methods for the accurate treatment of large supramolecular complexes

2017

In this work, we present scaled variants of the DLPNO-CCSD(T) method, dubbed as (LS)DLPNO-CCSD(T) and (NS)DLPNO-CCSD(T), to obtain accurate interaction energies in supramolecular complexes governed by noncovalent interactions. The novel scaled schemes are based on the linear combination of the DLPNO-CCSD(T) correlation energies calculated with the standard (LoosePNO and NormalPNO) and modified (Loose2PNO and Normal2PNO) DLPNO-CCSD(T) accuracy levels. The scaled DLPNO-CCSD(T) variants provide nearly TightPNO accuracy, which is essential for the quantification of weak noncovalent interactions, with a noticeable saving in computational cost. Importantly, the accuracy of the proposed schemes is…

chemistry.chemical_classificationFullerene010304 chemical physicsDispersion forcesNoncovalent interactionsSupramolecular chemistryGeneral Chemistry010402 general chemistry01 natural sciencesLondon dispersion force0104 chemical sciencesComputational MathematicsCrystallographychemistryComputational chemistryAb initio quantum chemistry methods0103 physical sciencesNon-covalent interactionsDLPNO-CCSD(T) scaled methodsDonor–acceptor supramolecular complexesAb initio calculationsQuímica FísicaLinear combination
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Estimation of isotropic nuclear magnetic shieldings in the CCSD(T) and MP2 complete basis set limit using affordable correlation calculations

2013

A linear correlation between isotropic nuclear magnetic shielding constants for seven model molecules (CH2O, H2O, HF, F2, HCN, SiH4 and H2S) calculated with 37 methods (34 density functionals, RHF, MP2 and CCSD(T)), with affordable pcS-2 basis set and corresponding complete basis set results, estimated from calculations with the family of polarization-consistent pcS-n basis sets is reported. This dependence was also supported by inspection of profiles of deviation between CBS estimated nuclear shieldings and shieldings obtained with the significantly smaller basis sets pcS-2 and aug-cc-pVTZ-J for the selected set of 37 calculation methods. It was possible to formulate a practical approach o…

isotropic nuclear magnetic shieldingaug-cc-pVTZ-JCCSD(T)pcS-2DFTCBSMagnetic Resonance in Chemistry
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