Search results for "DENSITY FUNCTIONAL THEORY"

showing 10 items of 981 documents

Toward an understanding of the 1,3-dipolar cycloaddition between diphenylnitrone and a maleimide:bisamide complex. A DFT analysis of the reactivity o…

2007

Abstract The 1,3-dipolar cycloaddition between diphenylnitrone and a maleimide:bisamide complex has been studied using density functional theory (DFT) methods at the B3LYP/6-31G∗ level. The molecular recognition of the bisamide receptor to maleimide favors the formation of the complex through three hydrogen bonds. However, they are not able to produce an efficient acceleration of the cycloaddition because the symmetric substitution of the dipolarophile sites. This poor capability is discussed in base of the transition state structures and the analysis of the reactivity indexes of the reagents.

Hydrogen bondCondensed Matter PhysicsBiochemistryCycloadditionchemistry.chemical_compoundMolecular recognitionchemistryComputational chemistryReagent13-Dipolar cycloadditionReactivity (chemistry)Density functional theoryPhysical and Theoretical ChemistryMaleimideJournal of Molecular Structure: THEOCHEM
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Structural and spectroscopic characterisation of 2-(2'-hydroxybenzoyl)pyrrole and its O-methyl derivative

2004

Abstract Density functional theory calculations on the tautomeric and conformational equilibria of 2-(2′-hydroxybenzoyl)pyrrole (HBP) and 2-(2′-methoxybenzoyl)pyrrole (MBP) were performed. Moreover, the experimental IR and UV spectra of the same compounds were recorded and compared with the theoretical data. The presence of an intramolecular hydrogen bond in HBP can be related to the biological activities of some of its derivatives.

Hydrogen bondMethyl derivativeCondensed Matter PhysicsBiochemistryTautomerSettore CHIM/08 - Chimica Farmaceuticachemistry.chemical_compoundUv spectrachemistryComputational chemistryIntramolecular forceDensity functional theoryPhysical and Theoretical ChemistryDFT calculations2-(2′-Hydroxybenzoyl)pyrrole2-(2′-Methoxybenzoyl)pyrrolePyrrole
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Molecular dynamics simulations of elementary chemical processes in liquid water using combined density functional and molecular mechanics potentials.…

1997

The first molecular dynamics (MD) simulation of a chemical process in solution with an ab initio description of the reactant species and a classical representation of the solvent is presented. We study the dynamics of proton (deuterium) transfer in strongly hydrogen-bonded systems characterized by an energy surface presenting a double well separated by a low activation barrier. We have chosen the hydroxyl-water complex in liquid water to analyze the coupling between the reactive system and the environment. The proton is transferred from one well to the other with a frequency close to 1 ps−1 which is comparable to the low-frequency band associated to hindered translations, diffusional transl…

Hydrogen bonds ; Molecular dynamics method ; Ab initio calculations Ion exchange ; Solvent effects ; Reaction kinetics theory ; Density functional theory ; Intermolecular mechanicsProtonChemistryGeneral Physics and AstronomyIntermolecular mechanicsMolecular dynamics methodHydrogen bondsUNESCO::FÍSICA::Química físicaMolecular dynamicsAb initio calculations Ion exchangeDeuteriumReaction dynamicsChemical physicsComputational chemistryAb initio quantum chemistry methodsSolvent effectsReaction kinetics theoryDensity functional theoryDensity functional theoryPhysical and Theoretical ChemistrySolvent effectsChemical equilibrium:FÍSICA::Química física [UNESCO]
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Tautomerism in pyridazin-3(2H)-one: a theoretical study using implicit/explicit solvation models.

2013

Abstract The tautomeric conversion of pyridazin-3(2H)-one 1 into pyridazin-3-ol 2 has been theoretically studied using density functional theory (DFT) methods at the B3LYP/6-311++G** level. Two mechanisms have been considered for this process: (i) one in which the hydrogen is directly transferred through TS12; and (ii) another one in which a double hydrogen transfer takes place via TS1122 upon formation of the corresponding dimer. The former requires a very high activation energy of 42.64 kcal/mol as a consequence of the strain associated with the formation of the four-membered TS12, while the latter requires a much lower activation energy, 14.66 kcal/mol. Implicit, explicit, and a combinat…

HydrogenMolecular StructureChemistryDimerSolvationchemistry.chemical_elementHydrogen BondingActivation energyModels TheoreticalComputer Graphics and Computer-Aided DesignTautomerPyridazineschemistry.chemical_compoundComputational chemistryMaterials ChemistrySolventsPolarThermodynamicsDensity functional theoryPhysical and Theoretical ChemistrySolvent effectsSpectroscopyJournal of molecular graphicsmodelling
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DFT and kinetic evidences of the preferential CO oxidation pattern of manganese dioxide catalysts in hydrogen stream (PROX)

2022

Abstract The oxidation functionality of Mn(IV) sites has been assessed by density functional theory (DFT) analysis of adsorption and activation energies of CO, H2 and O2 on a model Mn4O8 cluster. DFT calculations indicate that Mn(IV) atoms prompt an easy CO conversion to CO2 via a reaction path involving both catalyst and gas-phase oxygen species, while much greater energy barriers hinder H2 oxidation. Accordingly, a MnCeOx catalyst (Mnat/Ceat, 5) with large exposure of Mn(IV) sites shows a remarkable CO oxidation performance at T ≥ 293 K and no H2 oxidation activity below 393 K. Empiric kinetics disclose that the catalyst-oxygen abstraction step determines both CO and H2 oxidation rate, al…

HydrogenProcess Chemistry and TechnologyInorganic chemistryKineticsPROX2chemistry.chemical_elementPreferential CO oxidationManganeseReaction mechanism and kineticsOxygenCatalysisCatalysisand CO oxidationHDFT analysisAdsorptionchemistryDensity functional theoryDFT analysis; H; 2; and CO oxidation; Manganese dioxide catalyst; Preferential CO oxidation; Reaction mechanism and kineticsH2 and CO oxidationGeneral Environmental ScienceManganese dioxide catalyst
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From determination of the fugacity coefficients to estimation of hydrogen storage capacity: A convenient theoretical method

2015

Abstract The equation of state (EOS) from virial expansion (VE) is used in this work to pave the way for determining the fugacity coefficients of the hydrogen fluid at arbitrary temperature and pressure. The fugacity coefficients from our VE method have more physical meanings than the empirical values. In this way, the hydrogen storage capacity of a novel material model can be estimated by using few density functional theory (DFT) calculations with the aid of a continuum model. The efficient continuum model can provide a more accurate estimation of the hydrogen storage capacity than the pure DFT calculations. Furthermore, the expensive grand canonical ensemble (μNT) simulations combining wi…

HydrogenRenewable Energy Sustainability and the EnvironmentChemistryEnergy Engineering and Power TechnologyThermodynamicschemistry.chemical_elementCondensed Matter PhysicsHydrogen storageGrand canonical ensembleFuel TechnologyTemperature and pressureVirial expansionDensity functional theoryFugacityBilayer grapheneInternational Journal of Hydrogen Energy
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A computational and conceptual DFT study on the mechanism of hydrogen activation by novel frustrated Lewis pairs.

2015

A computational and conceptual density functional theory (DFT) study on the mechanism of molecular hydrogen activation by a set of three frustrated Lewis pairs (FLPs) was performed at the ωB97X-D/6-311G(d,p) level of theory. A reduced model and other two prototypes derived from experimental data, based on the donor nitrogen and acceptor boron atoms, were used. Analysis based on the energy results, geometries and the global electron density transfer at the TSs made it possible to obtain some interesting conclusions: (i) despite the well-known very low reactivity of molecular hydrogen, the catalytic effectiveness of the three FLPs produces reactions with almost unappreciable activation energi…

HydrogenSubstituentGeneral Physics and Astronomychemistry.chemical_elementAcceptorFrustrated Lewis pairCatalysischemistry.chemical_compoundAcetylenechemistryComputational chemistryReactivity (chemistry)Density functional theoryPhysical and Theoretical ChemistryPhysical chemistry chemical physics : PCCP
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Anharmonicity modeling in hydrogen bonded solvent dimers

2021

Abstract Harmonic and anharmonic frequencies of dimers and mixed dimers of water, methanol and benzene were computed and the results were critically analysed to investigate the anharmonicity of the normal mode vibrations within density functional theory (DFT) with empirically included Grimme correction for dispersion (D3). From several options, the B3LYP-D3/6-31++G* level of theory was selected as a good compromise between accuracy and calculation speed, suitable for future modeling of larger solvent clusters. The obtained raw harmonic and anharmonic second-order perturbation theory of vibrational frequencies (VPT2) were additionally scaled using a two-range procedure (below and above 2000 …

Hydrogenchemistry.chemical_element02 engineering and technology010402 general chemistryDFT01 natural sciencesMolecular physicsQuality (physics)Normal modePhysics::Atomic and Molecular ClustersMaterials ChemistryVPT2Physics::Chemical PhysicsPhysical and Theoretical ChemistryPerturbation theorySpectroscopyPhysicsAnharmonicity021001 nanoscience & nanotechnologyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsFrequency scaling0104 chemical sciencesElectronic Optical and Magnetic MaterialsVibrationchemistrySolvent dimersHarmonicH-BondingDensity functional theoryAnharmonic vibrational frequencies0210 nano-technologyJournal of Molecular Liquids
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Correlating Schiff Moments in the Light Actinides with Octupole Moments

2018

We show that the measured intrinsic octupole moments of $^{220}$Rn, $^{224}$Ra, and $^{226}$Ra constrain the intrinsic Schiff moments of $^{225}$Ra$^{221}$Rn, $^{223}$Rn, $^{223}$Fr, $^{225}$Ra, and $^{229}$Pa. The result is a dramatically reduced uncertainty in intrinsic Schiff moments. Direct measurements of octupole moments in odd nuclei will reduce the uncertainty even more. The only significant source of nuclear-physics error in the laboratory Schiff moments will then be the intrinsic matrix elements of the time-reversal non-invariant interaction produced by CP-violating fundamental physics. Those matrix elements are also correlated with octupole moments, but with a larger systematic u…

INTRINSIC REFLECTION ASYMMETRYPARAMETRIZATIONnuclear many-body theoryODDNuclear TheoryNUCLEInuclear density functional theorySKYRME INTERACTIONFOS: Physical sciencesRA-225114 Physical sciencesnuclear structure and decays3100Nuclear Theory (nucl-th)FORCESydinfysiikkanuclear tests of fundamental interactions
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Water and carbon oxides on monoclinic zirconia: experimental and computational insights

2014

Zirconium oxide (ZrO2, zirconia) is an interesting catalytic material to be used in biomass conversion, e.g., gasification and reforming. In this work, we show that reducing and hydrating pretreatments affect the surface sites on monoclinic zirconia. The multitechnique approach comprises temperature-programmed surface reactions (TPSR) under CO and CO2 at 100-550 °C, in situ DRIFTS investigations of the surface species and density functional theory (DFT) calculations. The key findings of the work are: (1) formates are formed either directly from gas-phase CO on terminal surface hydroxyls or via the linear CO surface species that are found exclusively on the reduced zirconia without water tre…

In situWork (thermodynamics)ChemistryInorganic chemistryta220General Physics and AstronomyCatalysisCarbon oxideDensity functional theoryCubic zirconiaWater treatmentPhysical and Theoretical Chemistryta216ta215ta116Monoclinic crystal systemPhysical Chemistry Chemical Physics
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