Search results for "Bond length"

showing 10 items of 209 documents

Nematic order in solutions of semiflexible polymers: Hairpins, elastic constants, and the nematic-smectic transition

2018

Coarse-grained models of lyotropic solutions of semiflexible polymers are studied by both molecular dynamics simulations and density functional theory calculations, using an implicit solvent bead-spring model with a bond-angle potential. We systematically vary the monomer density, persistence length, and contour length over a wide range and explore the full range from the isotropic-nematic transition to the nematic-smectic transition. In the nematic regime, we span the entire regime from rigid-rod like polymers to thin wormlike chains, confined in effective straight tubes caused by the collective nematic effective ordering field. We show that the distribution of bond angles relative to the …

Persistence lengthQuantitative Biology::BiomoleculesMaterials scienceCondensed matter physicsIsotropyGeneral Physics and Astronomy02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesCondensed Matter::Soft Condensed MatterBond lengthMolecular dynamicsMolecular geometryLiquid crystal0103 physical sciencesLyotropicDensity functional theoryPhysical and Theoretical Chemistry010306 general physics0210 nano-technologyThe Journal of Chemical Physics
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Ab initio simulations on the atomic and electronic structure of single-walled BN nanotubes and nanoarches

2009

To simulate the perfect single-walled boron nitride nanotubes and nanoarches with armchair- and zigzag-type chiralities and uniform diameter of � 5 nm, we have constructed their one-dimensional (1D) periodic models. In this study, we have compared the calculated properties of nanotubes with those for both hexagonal and cubic phases of bulk: bond lengths, binding energies per B–N bond, effective atomic charges as well as parameters of total and projected one-electron densities of states. For both phases of BN bulk, we have additionally verified their lattice constants. In the density functional theory (DFT), calculations performed using formalism of the localized Gaussian-type atomic functio…

PhononChemistryC. electronic structureBinding energyD. elastic and vibrational properties02 engineering and technologyGeneral ChemistryElectronic structure021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesA. BN nanostructuresOptical properties of carbon nanotubesBond lengthCondensed Matter::Materials ScienceLattice constantAb initio quantum chemistry methodsB. ab initio calculations0103 physical sciencesGeneral Materials ScienceDensity functional theoryAtomic physics010306 general physics0210 nano-technologyJournal of Physics and Chemistry of Solids
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A combined theoretical and experimental determination of the electronic spectrum of acetone

1996

A combined ab initio and experimental investigation has been performed of the main features of the electronic spectrum of acetone. Vertical transition energies have been calculated from the ground to the ny→π∗, π→π∗, σ→π∗, and the n=3 Rydberg states. In addition, the 1A1 energy surfaces have been studied as functions of the CO bond length. The 1A1 3p and 3d states were found to be heavily perturbed by the π→π∗ state. Resonant multiphoton ionization and polarization‐selected photoacoustic spectra of acetone have been measured and observed transitions were assigned on internal criteria. The calculated vertical transition energies to the ny→π∗ and all Rydberg states were found to be in agreeme…

Photoacoustic SpectroscopyOvertoneAb initioGeneral Physics and AstronomyPhotoionizationPhotoionizationSpectral lineAcetoneBond LengthsGround Statessymbols.namesakeRydberg StatesAb initio quantum chemistry methodsPolarizationIonizationPhysics::Atomic PhysicsPhysical and Theoretical Chemistry:FÍSICA::Química física [UNESCO]Carbon MonoxideEnergyChemistryUNESCO::FÍSICA::Química físicaSurfacesBond lengthElectron SpectraRydberg formulasymbolsAb Initio Calculations ; Acetone ; Bond Lengths ; Carbon Monoxide ; Electron Spectra ; Energy ; Ground States ; Multi−Photon Processes ; Photoacoustic Spectroscopy ; Photoionization ; Polarization ; Rydberg States ; SurfacesMulti−Photon ProcessesAtomic physicsAb Initio CalculationsThe Journal of Chemical Physics
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Gas-Phase Spectroscopic Detection and Structural Elucidation of Carbon-Rich Group 14 Binary Clusters: Linear GeC3Ge

2016

Guided by high-level quantum-chemical calculations at the CCSD(T) level of theory, the first polyatomic germanium-carbon cluster, linear Ge2C3, has been observed at high spectral resolution in the gas phase through its remarkably complex fundamental antisymmetric C-C stretching mode ν3 located at 1932 cm(-1). The observation of a total of six isotopic species permits the derivation of a highly accurate value for the equilibrium Ge-C bond length. The present study suggests that many more Ge-C species might be detectable in the future using a combination of laser-ablation techniques for production and high-resolution infrared and/or microwave techniques for spectroscopic detection.

Physics010304 chemical physicsInfraredAntisymmetric relationPolyatomic ionchemistry.chemical_elementNanotechnology010402 general chemistry01 natural sciences0104 chemical sciencesBond lengthchemistryChemical physics0103 physical sciencesCluster (physics)Physical and Theoretical ChemistrySpectral resolutionCarbonMicrowaveThe Journal of Physical Chemistry A
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Transition state ensemble optimization for reactions of arbitrary complexity.

2015

In the present work, we use Variational Transition State Theory (VTST) to develop a practical method for transition state ensemble optimization by looking for an optimal hyperplanar dividing surface in a space of meaningful trial collective variables. These might be interatomic distances, angles, electrostatic potentials, etc. Restrained molecular dynamics simulations are used to obtain on-the-fly estimates of ensemble averages that guide the variations of the hyperplane maximizing the transmission coefficient. A central result of our work is an expression that quantitatively estimates the importance of the coordinates used for the localization of the transition state ensemble. Starting fro…

PhysicsBond lengthArbitrarily largeMolecular dynamicsTransition state theoryHyperplaneQuantum mechanicsHistogramGeneral Physics and AstronomyStatistical physicsTransmission coefficientPhysical and Theoretical ChemistryReaction coordinateThe Journal of chemical physics
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Monte Carlo Simulation of Polymeric Materials — Still a Challenge?

1992

Monte Carlo simulation of polymeric materials is difficult, since they exhibit nontrivial structure over many different length scales, from the bond length (∼1A) to the radius of the random coil (∼102A) and still larger collective length scales, and similarly, motions occur on very different time scales. Hence it is a nontrivial problem to devise suitable coarse-grained models which capture the essential physics and are accessible to simulation.

PhysicsBond lengthMonte Carlo methodStructure (category theory)Polymer blendStatistical physicsRadiusFlory–Huggins solution theoryRandom coil
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Orthorhombic Phase of Crystalline Polyethylene: A Constant Pressure Path Integral Monte Carlo Study

1998

In this paper we present a Path Integral Monte Carlo (PIMC) simulation of the orthorhombic phase of crystalline polyethylene, using an explicit atom force field with unconstrained bond lengths and angles. This work represents a quantum extension of our recent classical simulation (J. Chem. Phys. 106, 8918 (1997)). It is aimed both at exploring the applicability of the PIMC method on such polymer crystal systems, as well as on a detailed assessment of the importance of quantum effects on different quantities. We used the $NpT$ ensemble and simulated the system at zero pressure in the temperature range 25 - 300 K, using Trotter numbers between 12 and 144. In order to investigate finite-size e…

PhysicsCondensed Matter - Materials ScienceCondensed matter physicsInternal energyCrystal systemMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesMolecular physicsBond lengthLattice constantLattice (order)AtomOrthorhombic crystal systemPath integral Monte Carlo
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The melting behaviour of small silicon clusters

1994

Abstract We report an analysis of the melting behaviour of small silicon clusters interacting via a nonlinear interatomic potential with four-body terms. The analysis shows, by means of Monte Carlo and molecular dynamics simulations, that the small silicon clusters undergo, in a vacuum, structural changes from a solid rigid state to a liquid-like state. The melting temperature exhibits a strong variation with cluster size.

PhysicsFusionSiliconMonte Carlo methodGeneral Physics and Astronomychemistry.chemical_elementInteratomic potentialBond lengthMany-body problemNonlinear systemMolecular dynamicschemistryChemical physicsPhysical chemistryPhysics Letters A
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Full configuration interaction calculation of Be3.

2004

The full configuration interaction (FCI) study of the ground state of the neutral beryllium trimer has been performed using an atomic natural orbitals [3s2p1d] basis set. Both triangular and linear structures have been considered for the Be(3) cluster. The optimal geometry for the equilateral triangle has been calculated. The potential energy cut sections along the normal a(1)(') mode and one of the components of the e(') mode have then been studied. The FCI symmetric atomization potential of the linear cluster is also reported. It shows a secondary van der Waals minimum at a long bond distance. All singular points in the potential energy curves are characterized. Other properties, like dis…

PhysicsGeneral Physics and AstronomyEquilateral trianglePotential energyFull configuration interactionMolecular physicsBond lengthsymbols.namesakeNormal modesymbolsPhysical and Theoretical Chemistryvan der Waals forceGround stateBasis setThe Journal of chemical physics
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Study of the Fundamental Bands of 70GeD4 by High-Resolution Raman and Infrared Spectroscopy: First Experimental Determination of the Equilibrium Bond…

2002

Abstract The four fundamental bands of 70 GeD 4 have been analyzed using the STDS software developed in Dijon (http://www.u-bourgogne.fr/LPUB/sTDS.html). Both infrared and Raman spectra were used to observe all fundamental bands. Infrared spectra of monoisotopic 70 GeD 4 were recorded in the regions 600 and 1500 cm −1 using the Bruker 120HR interferometer at Wuppertal. The resolution (1/maximum optical path difference) was between 2.3 and 3.3×10 −3 cm −1 for the ν 3 and ν 4 infrared-active fundamental bands as well as for the interacting ν 2 band. A high-resolution stimulated Raman spectrum of the ν 1 band has been recorded in Madrid. The instrumental resolution of the Raman spectrum was 3.…

PhysicsInfraredResolution (electron density)Infrared spectroscopyAtomic and Molecular Physics and OpticsBond lengthchemistry.chemical_compoundsymbols.namesakeNuclear magnetic resonancechemistryGermanesymbolsPhysical and Theoretical ChemistryAtomic physicsGround stateRaman spectroscopySpectroscopyOptical path lengthJournal of Molecular Spectroscopy
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