Search results for "Physics::Chemical Physics"

showing 10 items of 517 documents

Polarizabilities of small annulenes from Cholesky CC2 linear response theory

2004

Using recently developed algorithms based on Cholesky decomposition of two-electron integrals to compute response properties at the correlated level, the static and dynamic (at 589 nm) polarizabilities of [4n + 2]-annulenes (n = 1, 2, 3, 4) have been calculated. The results show that the perpendicular component increases along the series linearly with the number of double bonds. The in-plane static polarizability is also increasing linearly with the area of the aromatic ring in the case of the delocalized species. However, linearity is lost for the localized conformations and for the dynamic polarizability. (C) 2004 Elsevier B.V. All rights reserved.

Physicschemistry.chemical_classificationSeries (mathematics)Double bondGeneral Physics and AstronomyLinearityAnnuleneRing (chemistry)Molecular physicsPhysics and Astronomy (all)Delocalized electronchemistryPolarizabilityComputational chemistryPhysics::Atomic and Molecular ClustersPhysics::Chemical PhysicsPhysical and Theoretical ChemistryCholesky decompositionChemical Physics Letters
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Coherent Light Harvesting through Strong Coupling to Confined Light

2018

When photoactive molecules interact strongly with confined light modes, new hybrid light–matter states may form: the polaritons. These polaritons are coherent superpositions of excitations of the molecules and of the cavity photon. Recently, polaritons were shown to mediate energy transfer between chromophores at distances beyond the Forster limit. Here we explore the potential of strong coupling for light-harvesting applications by means of atomistic molecular dynamics simulations of mixtures of photoreactive and non-photo-reactive molecules strongly coupled to a single confined light mode. These molecules are spatially separated and present at different concentrations. Our simulations sug…

Physicsconfined lightPhotonLetterta114010405 organic chemistryChromophore010402 general chemistry7. Clean energy01 natural sciences0104 chemical sciencesDelocalized electronMolecular dynamicscoherent light harvestingChemical physicsstrong couplingPolaritonStrong couplingMoleculeGeneral Materials SciencevalokemiaPhysical and Theoretical ChemistryPhysics::Chemical Physicsta116ExcitationJournal of Physical Chemistry Letters
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SPECTROSCOPY AND NON-EQUILIBRIUM DISTRIBUTION OF VIBRATIONALLY EXCITED METHANE IN A SUPERSONIC JET

1998

Abstract High-resolution spectra of supersonic jets of vibrationally excited methane have been recorded by diode laser in the 8 μm region. A formalism for the description of energy distribution is proposed. It allows to estimate populations of vibrational polyads. Under these non-equilibrium conditions, translational temperature is also measured from line profiles. For relaxation, it is shown that vibrational relaxation between polyads is negligible whereas strong redistribution of population arises inside each polyad. Spectroscopically, observed lines involving the first four excited polyads allows cross-checked tests for energy level analysis.

Physicseducation.field_of_studyRadiationPopulationLaserAtomic and Molecular Physics and OpticsMethaneSpectral linelaw.inventionMathematics::Logicchemistry.chemical_compoundchemistrylawExcited stateVibrational energy relaxationSupersonic speedPhysics::Chemical PhysicsAtomic physicseducationSpectroscopySpectroscopyJournal of Quantitative Spectroscopy and Radiative Transfer
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Absence of mutual polariton scattering for strongly coupled surface plasmon polaritons and dye molecules with a large Stokes shift

2013

The understanding and control of the dynamics of hybrid modes consisting of strongly coupled surface plasmon polaritons and molecular excitations of dye molecules is of great timely interest, as it allows one to tailor interactions between optical signals as needed for active all-optical devices. Here we utilize dye molecules with an especially large Stokes shift to demonstrate the absence of mutual scatterings among the strongly coupled hybrid modes. We employ a quantum mechanical three-level model and show that the hybrid modes decay via dephasing and internal relaxation of the molecules to a fluorescing state of the dye, which can be used as a measure for the decay. Our results provide e…

Physicsta114Condensed matter physicsScatteringDephasingSurface plasmonRelaxation (NMR)Physics::OpticsCondensed Matter PhysicsMolecular physicsSurface plasmon polaritonElectronic Optical and Magnetic Materialssymbols.namesakeStokes shiftsymbolsPolaritonPhysics::Chemical PhysicsLocalized surface plasmonPhysical Review B
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Acceptor Concentration Dependence of Förster Resonance Energy Transfer Dynamics in Dye–Quantum Dot Complexes

2014

The dynamics of the photoinduced Forster resonance energy transfer (FRET) in a perylene diimide–quantum dot organic–inorganic hybrid system has been investigated by femtosecond time-resolved absorption spectroscopy. The bidentate binding of the dye acceptor molecules to the surface of CdSe/CdS/ZnS multishell quantum dots provides a well-defined dye-QD geometry for which the efficiency of the energy transfer reaction can be easily tuned by the acceptor concentration. In the experiments, the spectral characteristics of the chosen FRET pair facilitate a selective photoexcitation of the quantum dot donor. Moreover, the acceptor related transient absorption change that occurs solely after energy…

Physics::Biological PhysicsAbsorption spectroscopyChemistryCondensed Matter::Mesoscopic Systems and Quantum Hall EffectPhotochemistryAcceptorSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsPhotoexcitationCondensed Matter::Materials Sciencechemistry.chemical_compoundGeneral EnergyFörster resonance energy transferQuantum dotChemical physicsUltrafast laser spectroscopyMoleculePhysics::Chemical PhysicsPhysical and Theoretical ChemistryPeryleneThe Journal of Physical Chemistry C
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Highly transparent and birefringent chromophores for organic photorefractive materials

1999

Abstract A series of chromophores for application in organic photorefractive (PR) materials is investigated by electro-optical absorption measurements (EOAM). This experimental technique yields information on the transition dipole moment μ ag , the ground-state dipole moment μ g , and the change of the dipole moment upon optical excitation Δ μ within the intense charge transfer (CT) band of the dyes. It is shown that the results of the EOAM experiment allow us to estimate the PR figures-of-merits (FOMs) of the chromophores by either perturbational two-level equations or Kramers–Kronig transformation. In particular, chromophores based on the heterocyclic dihydropyran and dihydropyridine grou…

Physics::Biological PhysicsBirefringencebusiness.industryChemistryTransition dipole momentGeneral Physics and AstronomyPhotorefractive effectChromophoreAcceptorMolecular physicsOrganic photorefractive materialsDipolePolarizabilityOptoelectronicsPhysics::Chemical PhysicsPhysical and Theoretical ChemistrybusinessChemical Physics
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Effect of Packing on Cluster Solvation of Nanotubes

2006

It is discussed the possibility of the existence of single-wall carbon nanotubes (SWNTs) in organic solvents in the form of clusters, containing a number of SWNTs. A theory is developed based on a bundlet model for clusters, which enables describing the distribution function of clusters by size. Comparison of the calculated values of solubility with experimental data would permit obtaining energetic parameters characterizing the interaction of an SWNT with its surrounding, in a solid phase or solution. Fullerenes—SWNTs are unique objects, whose behaviour in many physical situations is characterized by remarkable peculiarities. Peculiarities in solutions show up first in that fullerenes—SWNT…

Physics::Biological PhysicsMaterials scienceFullereneSelective chemistry of single-walled nanotubesSolvationNanotechnologyCarbon nanotubeCondensed Matter::Mesoscopic Systems and Quantum Hall Effectlaw.inventionCondensed Matter::Materials ScienceCarbon nanobudChemical physicslawPhase (matter)Cluster (physics)MoleculePhysics::Chemical Physics2006 Sixth IEEE Conference on Nanotechnology
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Isotope Effects and Collective Excitations

1983

Isotopic substitution in the aqueous solvent is discussed as an effective method for probing the role of solvent dynamics in the stability of biomolecular conformation.

Physics::Biological PhysicsQuantitative Biology::BiomoleculesAqueous solutionChemistrySubstitution (logic)technology industry and agriculturemacromolecular substancesCondensed Matter::Soft Condensed MatterSolventChemical physicsbiological sciencesKinetic isotope effectQuasiparticlenatural sciencesPhysics::Chemical Physics
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Photophysical behavior of norharmane related to proximity effect

1990

Abstract Solvent and temperature effects of fluorescence and its polarization characteristics for norharmane were studied. From the results obtained it is concluded that the fluorescent state changes from the φφ ∗ -type in a polar solvent (EPA) to nφ ∗ -type in a nonpolar solvent (MC), and also that lowest singlet excited states (φφ ∗ -type and nφ ∗ -type) interact by vibronic coupling. In the nonpolar solvent (MC) the lowest singlet excited states are very close in energy and consequently the vibronic coupling is stronger. At high temperatures, in a nonpolar solvent (MC), the emission is from both the φφ ∗ - and nφ ∗ -states due to thermal equilibration, while at low temperatures the emiss…

Physics::Biological PhysicsQuantitative Biology::BiomoleculesChemistryBiophysicsGeneral ChemistryCondensed Matter PhysicsPolarization (waves)PhotochemistryBiochemistryFluorescenceAtomic and Molecular Physics and OpticsMolecular electronic transitionCondensed Matter::Soft Condensed MatterSolventVibronic couplingExcited statePolarSinglet statePhysics::Chemical PhysicsJournal of Luminescence
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Phospholipid monolayers at water∣oil interfaces: theoretical modelling of surface pressure–molecular area isotherms

1998

Abstract The phospholipid adsorption and surface pressure–molecular area isotherms at interfaces are interpreted theoretically from two-dimensional (2D) lattice and real gas models that incorporate a minimum number of adjustable parameters. The first model is based on the lattice statistics of binary solutions and the molecular parameters introduced are the energy changes involved in the mixing process of the phospholipid and organic solvent molecules and the effective phospholipid head area. The surface pressure is interpreted in terms of the difference between the two liquid surface tensions. The second model makes use of (i) a non-localised adsorption model with a square-well potential e…

Physics::Biological PhysicsReal gasChromatographyChemistryGeneral Chemical EngineeringPhospholipidThermodynamicsInteraction energySurface pressurePotential energyAnalytical ChemistryCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundAdsorptionMonolayerElectrochemistrylipids (amino acids peptides and proteins)Physics::Chemical PhysicsOrder of magnitudeJournal of Electroanalytical Chemistry
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