Search results for "van der Waals force"

showing 10 items of 170 documents

Through-space spin-spin coupling in acetylenic systems. Ab initio and DFT calculations

2003

Abstract: We have investigated, by means of ab initio and DFT calculations, the magnitude of through-space spin-spin couplings ( J CH and J HH ) in CH/π bonded van der Waals dimers involving acetylene, and in a structurally related covalent compound (4-ethynylphenanthrene). Within regions where the interaction is stabilizing J HH couplings are very small (< 0.1 Hz) for all complexes. In the acetylene-methane complex J CH is also very small, whereas in the acetylene-benzene complex and the acetylene dimer it shows a relatively large dependence on the tilt angle from the T-shaped arrangement, for which the smallest values are calculated, to a parallel slipped arrangement where J CH is ca. 0.5…

Through-space couplingDimerAb initioDFTCatalysisspin-spin couplinglcsh:ChemistryInorganic Chemistrychemistry.chemical_compoundsymbols.namesakeNMR spectroscopyComputational chemistryThrough-space coupling / NMR / ab initio / DFTPhysics::Atomic and Molecular ClustersPhysics::Chemical PhysicsPhysical and Theoretical ChemistryNMR spectroscopy; computational chemistry; spin-spin couplingSpin (physics)lcsh:QH301-705.5Molecular BiologySpectroscopyCouplingab initioChemistryOrganic ChemistryGeneral MedicineNuclear magnetic resonance spectroscopycomputational chemistryNMRComputer Science ApplicationsCrystallographylcsh:Biology (General)lcsh:QD1-999AcetyleneCovalent bondsymbolsCondensed Matter::Strongly Correlated ElectronsComputingMethodologies_GENERALvan der Waals force
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Mathematical model for the adsorption-induced nonlocal frequency shift in adatoms-nanobeam system

2017

Abstract This paper models and investigates the resonance frequency shift induced by the adsorption phenomena for an adatoms-nanobeam system including the small scale effect as well as rotary inertia and shear distortion effects. The Lennard-Jones (6–12) type potential is used to determine the adsorption-induced energy owing van der Waals (vdW) interaction mechanism between adatom-adatom and adatom-substrate. The small scale effect is introduced by using Eringen's nonlocal elasticity theory while the explicit expressions of inertia moment and shear force are derived from the standard Timoshenko beam equations in which the residual stress effect is accounted as an additive axial load. Numeri…

Timoshenko beam theoryPhysicsCondensed matter physicsmedia_common.quotation_subjectShear forceRotary inertia02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsInertiaElectronic Optical and Magnetic MaterialsMoment (mathematics)VibrationShear (sheet metal)Condensed Matter::Materials Sciencesymbols.namesake020303 mechanical engineering & transports0203 mechanical engineeringPhysics::Atomic and Molecular ClusterssymbolsPhysics::Chemical PhysicsElectrical and Electronic Engineeringvan der Waals force0210 nano-technologymedia_commonPhysica B: Condensed Matter
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Casimir-Polder interaction energy between two atoms in uniformly accelerated motion

2013

Unruh effectvan der Waals forceCasimir-Polder force
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Phase coexistence in finite van der Waals systems

1999

Phase coexistence in finite systems obeying van der Waals equation of state is studied by minimizing a model free energy function for a spherical liquid droplet and a gaseous phase around it. Phase diagrams are calculated for finite systems with a large range of sizes. According to this model, the highest temperature where a droplet and vapour can exist in equilibrium decreases as N −0.4, where N is the number of particles in the system. The model predicts higher equilibrium vapour pressures than molecular dynamics simulations.

Van der Waals equationParticle numberChemistryBiophysicsThermodynamicsCondensed Matter PhysicsTheorem of corresponding statesPhysics::Fluid Dynamicssymbols.namesakeMolecular dynamicsPhase (matter)symbolsVan der Waals radiusPhysical and Theoretical Chemistryvan der Waals forceMolecular BiologyPhase diagram
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Grand Canonical Monte Carlo Simulations to Determine the Optimal Interlayer Distance of a Graphene Slit-Shaped Pore for Adsorption of Methane, Hydrog…

2021

The adsorption—for separation, storage and transportation—of methane, hydrogen and their mixture is important for a sustainable energy consumption in present-day society. Graphene derivatives have proven to be very promising for such an application, yet for a good design a better understanding of the optimal pore size is needed. In this work, grand canonical Monte Carlo simulations, employing Improved Lennard–Jones potentials, are performed to determine the ideal interlayer distance for a slit-shaped graphene pore in a large pressure range. A detailed study of the adsorption behavior of methane, hydrogen and their equimolar mixture in different sizes of graphene pores is obtained through ca…

Work (thermodynamics)Materials scienceHydrogenGeneral Chemical EngineeringThermodynamicschemistry.chemical_element02 engineering and technology010402 general chemistry7. Clean energy01 natural sciencesMethaneArticlelaw.inventionsymbols.namesakechemistry.chemical_compoundAdsorptionlawGeneral Materials ScienceQD1-999grand canonical Monte CarloGrand canonical monte carloGraphenemethanegraphene021001 nanoscience & nanotechnology0104 chemical sciencesChemistrychemistryadsorptionhydrogensymbolsvan der Waals force0210 nano-technologySelectivityslit-shaped poreNanomaterials (Basel, Switzerland)
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Interaction of Charged Amino-Acid Side Chains with Ions: An Optimization Strategy for Classical Force Fields

2014

Many well-established classical biomolecular force fields, fitted on the solvation properties of single ions, do not necessarily describe all the details of ion pairing accurately, especially for complex polyatomic ions. Depending on the target application, it might not be sufficient to reproduce the thermodynamics of ion pairing, but it may also be necessary to correctly capture structural details, such as the coordination mode. In this work, we analyzed how classical force fields can be optimized to yield a realistic description of these different aspects of ion pairing. Given the prominent role of the interactions of negatively charged amino-acid side chains and divalent cations in many …

Work (thermodynamics)Static ElectricityAcetatesMolecular Dynamics SimulationIonsymbols.namesakeMolecular dynamicsEngineeringMaterials ChemistryAmino AcidsPhysical and Theoretical ChemistryIonsHydrogen bondChemistryPolyatomic ionSolvationWaterHydrogen BondingCalcium CompoundsSurfaces Coatings and FilmsChemical physicsYield (chemistry)Physical SciencesChemical SciencessymbolsThermodynamicsAtomic physicsvan der Waals forceThe Journal of Physical Chemistry B
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Methyl 3,3,6,6-tetramethyl-1,8-dioxo-4,5,7,9-tetrahydro-2H-xanthene-9-carboxylate

2020

The title molecule, C19H24O5, is built by annulation of a half-chair cyclohexenone and a twist-cyclohexenone to a flat 4-H-pyrane boat. In the crystal, molecules are connected via van der Waals interactions and C—H...O hydrogen bonds.

XantheneAnnulationcrystal structureheterocyclesbiologyChemistryHydrogen bondGeneral MedicineCrystal structurebiology.organism_classificationMedicinal chemistryCrystalsymbols.namesakechemistry.chemical_compoundsymbolslcsh:QD901-999Tetralcsh:Crystallographyvan der Waals forcepolycyclic systemIUCrData
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Ultrafast Dynamics of Dansylated POPAM Dendrimers and Energy Transfer in their Dye Complexes

2009

We have studied internal dynamics of dansylated poly(propyleneamine) dendrimers of different generations in solution and excitation energy transfer from dansyl chromophores to xanthene dyes that form van der Waals complexes with the dendrimers

XantheneChemistryDynamics (mechanics)Chromophoresymbols.namesakechemistry.chemical_compoundChemical physicsComputational chemistryDendrimersymbolsvan der Waals forceUltrashort pulseFluorescence anisotropyExcitation
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On the origin of the halo stabilization

2012

Monte Carlo simulations show that charge-regulation alone can cause highly charged zirconium nanoparticles to adsorb to a similarly charged or neutral silica particle and thereby stabilizing the latter. This mechanism, referred to as halo stabilization, is quite general and applicable in a range of systems provided that pH, van der Waals forces, and dissociation constants of the charge-regulating particles are properly chosen. In our modeling we see an overall attraction at low volume fractions of nanoparticles, while at higher a repulsive barrier is created, stabilizing the microparticles and protecting them from aggregation. The charge-regulation mechanism also turns the silica surface fr…

ZirconiumRange (particle radiation)Monte Carlo methodPhysics::OpticsGeneral Physics and Astronomychemistry.chemical_elementNanoparticle02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencessymbols.namesakeAdsorptionchemistryChemical physicsTheoretical chemistrysymbolsHalo[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]Physical and Theoretical Chemistryvan der Waals forceAtomic physics0210 nano-technologyComputingMilieux_MISCELLANEOUS
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A study of the atmospherically important reactions between dimethyl selenide (DMSe) and molecular halogens (X2 = Cl2, Br2, and I2) with ab initio cal…

2012

The atmospherically relevant reactions between dimethyl selenide (DMSe) and the molecular halogens (X(2) = Cl(2), Br(2), and I(2)) have been studied with ab initio calculations at the MP2/aug-cc-pVDZ level of theory. Geometry optimization calculations showed that the reactions proceed from the reagents to the products (CH(3)SeCH(2)X + HX) via three minima, a van der Waals adduct (DMSe:X(2)), a covalently bound intermediate (DMSeX(2)), and a product-like complex (CH(3)SeCH(2)X:HX). The computed potential energy surfaces are used to predict what molecular species are likely to be observed in spectroscopic experiments such as gas-phase photoelectron spectroscopy and infrared matrix isolation s…

atmospheric chemistry dimethyl selenideChemistryMatrix isolationAdductsymbols.namesakechemistry.chemical_compoundComputational chemistryAb initio quantum chemistry methodsSelenideHalogensymbolsDimethyl sulfidePhysical and Theoretical Chemistryvan der Waals forceSpectroscopyThe journal of physical chemistry. A
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