Search results for "Van der Waals force"

showing 10 items of 170 documents

Temperature-controlled poly(propylene) glycol hydrophobicity on the formation of inclusion complexes with modified cyclodextrins. A DSC and ITC study.

2011

The study highlighted the main forces driving the formation of hydroxypropyl-cyclodextrins (HP-CDs) + poly(propylene) glycol 725 g mol(-1) inclusion complexes. The temperature parameter was chosen as the variable to modulate the hydrophobicity of the polymer, and consequently ITC experiments as functions of temperature as well as DSC measurements were done in a systematic way. The polymer is not included into HP-α-CD, it is strongly bound to HP-β-CD and it is floating in HP-γ-CD. The stability of the inclusion complexes is entropy controlled. The gain of the entropy is a unique result compared to the opposite literature findings for inclusion complexes based on polymers and CDs. This peculi…

PolymersEnthalpyGeneral Physics and AstronomyCalorimetrychemistry.chemical_compoundsymbols.namesakeDifferential scanning calorimetryOrganic chemistryPropylene oxidePhysical and Theoretical ChemistrySolubilitySettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationBinodalCyclodextrinsTemperatureWaterPolymerchemistrySolubilityPropylene GlycolssymbolsPhysical chemistryThermodynamicsvan der Waals forceCalorimetry polymer Cyclodextrins supramoleculesEthylene glycolHydrophobic and Hydrophilic InteractionsPhysical chemistry chemical physics : PCCP
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Rovibrational structure of the Ar–CO complex based on a novel three-dimensional ab initio potential

2002

The first three-dimensional ab initio intermolecular potential energy surface of the Ar–CO van der Waals complex is calculated using the coupled cluster singles and doubles including connected triples model and the augmented correlation-consistent polarized valence quadruple zeta (aug-cc-pVQZ) basis set extended with a (3s3p2d1f1g) set of midbond functions. The three-dimensional surface is averaged over the three lowest vibrational states of CO. Rovibrational energies are calculated up to 50 cm−1 above the ground state, thus enabling comprehensive comparison between theory and available experimental data as well as providing detailed guidance for future spectroscopic investigations of highe…

Potential Energy SurfacesCoupled Cluster CalculationsAb initioGeneral Physics and AstronomyPhysics and Astronomy (all)symbols.namesakeAb initio quantum chemistry methodsQuasimoleculesPhysics::Atomic and Molecular ClustersVibrational StatesPhysics::Atomic PhysicsPhysics::Chemical PhysicsPhysical and Theoretical ChemistryArgon:FÍSICA::Química física [UNESCO]Rotational-Vibrational StatesBasis setValence (chemistry)ChemistryRotational–vibrational spectroscopyCarbon CompoundsUNESCO::FÍSICA::Química físicaCoupled clustersymbolsArgon ; Carbon Compounds ; Quasimolecules ; Rotational-Vibrational States ; Potential Energy Surfaces ; Ab Initio Calculations ; Intermolecular Mechanics ; Coupled Cluster Calculations ; Vibrational StatesIntermolecular Mechanicsvan der Waals forceAtomic physicsGround stateAb Initio Calculations
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Study of the benzene⋅N2 intermolecular potential-energy surface

2003

The intermolecular potential-energy surface pertaining to the interaction between benzene and N2 is investigated theoretically and experimentally. Accurate intermolecular interaction energies are evaluated for the benzene–N2 van der Waals complex using the coupled cluster singles and doubles including connected triples [CCSD(T)] method and the aug-cc-pVDZ basis set extended with a set of 3s3p2d1f1g midbond functions. After fitting the energies to an analytic function, the intermolecular Schrödinger equation is solved to yield energies, rotational constants, and Raman-scattering coefficients for the lowest intermolecular levels of several benzene–N2 isotopomers. Experimentally, intermolecula…

Potential Energy SurfacesCoupled Cluster CalculationsNitrogenBinding energyGeneral Physics and AstronomyPotential Energy Functionssymbols.namesakePhysics and Astronomy (all)IsomerismQuasimoleculesRotational IsomerismPhysics::Atomic and Molecular ClustersQuantum-mechanical explanation of intermolecular interactionsRotational StatesPhysical and Theoretical ChemistryPhysics::Chemical Physics:FÍSICA::Química física [UNESCO]Basis setSchrodinger EquationChemistryOrganic CompoundsIsotope EffectsIntermolecular forceStimulated Raman ScatteringUNESCO::FÍSICA::Química físicaCoupled clustersymbolsAtomic physicsvan der Waals forceOrganic Compounds ; Nitrogen ; Quasimolecules ; Potential Energy Surfaces ; Potential Energy Functions ; Coupled Cluster Calculations ; Rotational States ; Isomerism ; Isotope Effects ; Stimulated Raman Scattering ; Rotational Isomerism ; Schrodinger EquationRaman spectroscopyRaman scattering
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Computational and experimental investigation of intermolecular states and forces in the benzene-helium van der Waals complex

2003

A study of the intermolecular potential-energy surface (IPS) and the intermolecular states of the perprotonated and perdeuterated benzene–He complex is reported. From a fit to ab initio data computed within the coupled cluster singles and doubles including connected triples model for 280 interaction geometries, an analytic IPS including two- to four-body atom–atom terms is obtained. This IPS, and two other Lennard-Jones atom–atom surfaces from the literature, are each employed in dynamically exact (within the rigid-monomer approximation) calculations of J = 0 intermolecular states of the isotopomers. Rotational constants and Raman-scattering coefficients for intermolecular vibrational trans…

Potential Energy SurfacesCoupled Cluster CalculationsRaman SpectraHelium Neutral AtomsOrganic Compounds ; Helium Neutral Atoms ; Intermolecular Mechanics ; Quasimolecules ; Potential Energy Surfaces ; Ab Initio Calculations ; Coupled Cluster Calculations ; Lennard-Jones Potential ; Isotope Effects ; Isomerism ; Rotational States ; Raman SpectraAb initioGeneral Physics and AstronomyIsotopomerssymbols.namesakePhysics and Astronomy (all)IsomerismAb initio quantum chemistry methodsQuasimoleculesKinetic isotope effectPhysics::Atomic and Molecular ClustersRotational StatesPhysics::Atomic PhysicsLennard-Jones PotentialPhysics::Chemical PhysicsPhysical and Theoretical Chemistry:FÍSICA::Química física [UNESCO]ChemistryOrganic CompoundsIsotope EffectsIntermolecular forceUNESCO::FÍSICA::Química físicaCoupled clusterLennard-Jones potentialsymbolsIntermolecular MechanicsAtomic physicsvan der Waals forceAb Initio Calculations
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Bond-extended stochastic and nonstochastic bilinear indices. I. QSPR/QSAR applications to the description of properties/activities of small-medium si…

2010

Bond-extended stochastic and nonstochastic bilinear indices are introduced in this article as novel bond-level molecular descriptors (MDs). These novel totals (whole-molecule) MDs are based on bilinear maps (forms) similar to use defined in linear algebra. The proposed nonstochastic indices try to match molecular structure provided by the molecular topology by using the kth Edge(Bond)-Adjacency Matrix (Ek, designed here as a nonstochastic E matrix). The stochastic parameters are computed by using the kth stochastic edge-adjacency matrix, ESk, as matrix operators of bilinear transformations. This new edge (bond)-adjacency relationship can be obtained directly from Ek and can be considered li…

Quantitative structure–activity relationshipChemistryBilinear interpolationCondensed Matter PhysicsAtomic and Molecular Physics and Opticschemistry.chemical_compoundsymbols.namesakeComputational chemistryPolarizabilityMolecular descriptorLinear regressionLinear algebrasymbolsApplied mathematicsMolecular graphPhysical and Theoretical Chemistryvan der Waals forceInternational Journal of Quantum Chemistry
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Extrinsic Effects on the Optical Properties of Surface Color Defects Generated in Hexagonal Boron Nitride Nanosheets

2021

Hexagonal boron nitride (hBN) is a wide-band gap van der Waals material able to host light-emitting centers behaving as single photon sources. Here, we report the generation of color defects in hBN nanosheets dispersed on different kinds of substrates by thermal treatment processes. The optical properties of these defects have been studied using microspectroscopy techniques and far-field simulations of their light emission. Using these techniques, we have found that subsequent ozone treatments of the deposited hBN nanosheets improve the optical emission properties of created defects, as revealed by their zero-phonon linewidth narrowing and reduction of background emission. Microlocalized co…

QuenchingMaterials sciencePhotoluminescencecolor defectsbusiness.industryThermal treatmentSubstrate (electronics)Dielectric2D materialshexagonal boron nitride; 2D materials; color defects; photoluminescence;interfacessymbols.namesakesymbolsOptoelectronicsphotoluminescenceGeneral Materials ScienceLight emissionhexagonal boron nitridevan der Waals forcePhotonicsbusinessResearch Article
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High-Pressure, High-Temperature Phase Diagram of Calcium Fluoride from Classical Atomistic Simulations

2013

We study the phase diagram of calcium fluoride (CaF2) under pressure using classical molecular dynamics simulations performed with a reliable pairwise interatomic potential of the Born−Mayer−Huggins form. Our results obtained under conditions 0 ≤ P ≲ 20 GPa and 0 ≤ T ≲ 4000 K reveal a rich variety of multiphase boundaries involving different crystal, superionic, and liquid phases, for all of which we provide an accurate parametrization. Interestingly, we predict the existence of three special triple points (i.e., solid−solid−superionic, solid−superionic−superionic, and superionic−superionic−liquid coexisting states) within a narrow and experimentally accessible thermodynamic range of 6 ≤ P …

Range (particle radiation)Materials scienceThermodynamicschemistry.chemical_elementInteratomic potentialSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystalsymbols.namesakeMolecular dynamicsGeneral EnergychemistrysymbolsFluorinePhysical and Theoretical Chemistryvan der Waals forceParametrizationPhase diagramThe Journal of Physical Chemistry C
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Reorientational dynamics in simple supercooled liquids

1998

Abstract The geometry of the reorientational dynamics in the van der Waals liquid, toluene, and the hydrogen bond network, glycerol, are compared. Both systems have contributions from small angle fluctuations. In glycerol the fraction of these small angle fluctuations is much larger than in toluene, due to the stronger anisotropic interactions in the former substance. The average reorientational angle in both systems is similar and on the order of 10 ∘ . In addition we analyze the stretching of the rotational correlation functions of rank one and two. In both cases we find that the second rank correlation function has a more pronounced stretching than the corresponding first rank correlatio…

Rank (linear algebra)ChemistryHydrogen bondThermodynamicsCondensed Matter PhysicsToluene530Electronic Optical and Magnetic MaterialsCondensed Matter::Soft Condensed Mattersymbols.namesakechemistry.chemical_compoundMaterials ChemistryCeramics and CompositessymbolsPhysical chemistryRelaxation (physics)Physics::Chemical Physicsvan der Waals forceAnisotropySupercoolingRank correlation
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Dynamic anomalies at the glass transition of organic van der Waals liquids

1993

Abstract The paper discusses the question of whether there is a characteristic temperature T c above the calorimetric glass transition temperature T g . Mode-coupling theory (MCT) predicts a crossover from liquid- to solid-like dynamics at T c . Neutron scattering and gradient NMR experiments have been carried out to test MCT using the molecular van der Waals liquid ortho -terphenyl as a model system. A significant anomaly of the Debye—Waller factor and a “decoupling” of self-diffusion from viscosity support the MCT predictions. A critical discussion of the relevance of such tests and of the limitations of neutron scattering is presented.

Self-diffusionCondensed matter physicsOrganic ChemistryNeutron scatteringCondensed Matter::Disordered Systems and Neural NetworksAnalytical ChemistryCondensed Matter::Soft Condensed MatterInorganic Chemistrychemistry.chemical_compoundViscositysymbols.namesakechemistryTerphenylsymbolsPhysics::Chemical PhysicsAnomaly (physics)Debye–Waller factorvan der Waals forceGlass transitionSpectroscopyJournal of Molecular Structure
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Peeling of multilayer graphene creates complex interlayer sliding patterns

2015

Peeling, shearing, and sliding are important mechanical phenomena in van der Waals solids. However, theoretically they have been studied mostly using minimal periodic cells and in the context of accurate quantum simulations. Here, we investigate the peeling of large-scale multilayer graphene stacks with varying thicknesses, stackings, and peeling directions by using classical molecular dynamics simulations with a registry-dependent interlayer potential. Simulations show that, while at large scale the peeling proceeds smoothly, at small scale the registry shifts and sliding patterns of the layers are unexpectedly intricate and depend both on the initial stacking and on the peeling direction.…

Shearing (physics)Materials scienceCondensed Matter - Mesoscale and Nanoscale Physicsta114Condensed matter physicsGrapheneMechanical PhenomenaStackingFOS: Physical sciencesNanotechnologysimulationCondensed Matter Physicsmultilayer grapheneElectronic Optical and Magnetic Materialslaw.inventionMolecular dynamicssymbols.namesakelawMesoscale and Nanoscale Physics (cond-mat.mes-hall)symbolssimulointipeelingvan der Waals forceQuantumPhysical Review B
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