Search results for " orbita"

showing 10 items of 447 documents

FIRST-PRINCIPLES LCAO CALCULATIONS ON 5D TRANSITION METAL OXIDES: ELECTRONIC AND PHONON PROPERTIES

2009

ABSTRACT First-principles quantum chemistry calculations within the periodic linear combination of atomic orbitals (LCAO) formalism have been used to probe electronic and phonon properties of crystalline 5d transition metal oxides ReO3, ZnWO4 and CaWO4. The obtained equilibrium crystal structure is in good agreement with known crystallographic data. Rhenium trioxide is correctly predicted to be a metal, whereas both tungstates—a wide gap insulating compounds. The phonon frequencies, calculated by the frozen phonon method, agree rather well with those obtained by infrared and Raman spectroscopies.

Materials sciencePhononElectronic structureCrystal structureCondensed Matter PhysicsQuantum chemistryMolecular physicsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials Sciencechemistry.chemical_compoundsymbols.namesakeRhenium trioxideTransition metalchemistryControl and Systems EngineeringLinear combination of atomic orbitalsMaterials ChemistryCeramics and CompositessymbolsCondensed Matter::Strongly Correlated ElectronsElectrical and Electronic EngineeringRaman spectroscopyIntegrated Ferroelectrics
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Saddle-like, π-conjugated, cyclooctatetrathiophene-based, hole-transporting material for perovskite solar cells

2019

A flexible, saddle-like, π-conjugated skeleton composed of four fused thiophene rings forming a cyclooctatetrathiophene (CoTh) with four triphenylamines (CoTh-TTPA) is presented as a hole-transporting material (HTM) for perovskite solar cells. The new HTM shows a bright red color stemming from a direct conjugation between the TPA groups and the central CoTh scaffold. This results in a charge transfer band due to the combination of the weak acceptor moiety, the CoTh unit, and the electron-donating p-methoxytriphenylamine groups. CoTh-TTPA exhibits a suitable highest-occupied molecular orbital (HOMO) level in relation to the valence band edge of the perovskite, which ensures efficient hole ex…

Materials sciencePhotoluminescence02 engineering and technologyGeneral ChemistryConductivityConjugated system010402 general chemistry021001 nanoscience & nanotechnology7. Clean energy01 natural sciencesAcceptor0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryMaterials ChemistryThiopheneMoietyMolecular orbital0210 nano-technologyPerovskite (structure)
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First-principles LCAO study of the low and room temperature phases of CdPS$_3$

2020

A.K. is grateful to the Latvian Council of Science project no. lzp-2018/2-0353 for financial support. Institute of Solid State Physics, University of Latvia as the Center of Excellence has received funding from the European Union’s Horizon 2020 Framework Programme H2020-WIDESPREAD-01-2016-2017-TeamingPhase2 under grant agreement No. 739508, project CAMART2.

Materials sciencePhysics and Astronomy (miscellaneous)Band gapfirst principles calculationsHydrostatic pressurelayered compoundGeneral Physics and AstronomyFOS: Physical sciencesCdPS3Electronic structure01 natural sciences7. Clean energyPressure rangePhase (matter)0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]010306 general physics010302 applied physicsCondensed Matter - Materials ScienceCondensed matter physicsMaterials Science (cond-mat.mtrl-sci)electronic structurehigh pressureLinear combination of atomic orbitalsDirect and indirect band gapsMonoclinic crystal system
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Direct hot-carrier transfer in plasmonic catalysis

2019

Plasmonic metal nanoparticles can concentrate optical energy and enhance chemical reactions on their surfaces. Plasmons can interact with adsorbate orbitals and decay by directly exciting a carrier from the metal to the adsorbate in a process termed the direct-transfer process. Although this process could be useful for enhancing the efficiency of a chemical reaction, it remains poorly understood. Here, we report a preliminary investigation employing time-dependent density-functional theory (TDDFT) calculations to capture this process at a model metal-adsorbate interface formed by a silver nanoparticle (Ag147) and a carbon monoxide molecule (CO). Direct hot-electron transfer is observed to o…

Materials sciencePhysics::Optics02 engineering and technologyTime-dependent density functional theory010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesChemical reactionSilver nanoparticle0104 chemical sciencesCatalysisCondensed Matter::Materials ScienceAdsorptionChemical physicsMoleculeMolecular orbitalPhysics::Chemical PhysicsPhysical and Theoretical Chemistry0210 nano-technologyPlasmonFaraday Discussions
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Ab initio LCAO study of the atomic, electronic and magnetic structures and the lattice dynamics of triclinic CuWO4

2013

Abstract The electronic, structural and phonon properties of antiferromagnetic triclinic CuWO 4 have been studied using the first-principles spin-polarized linear combination of atomic orbital (LCAO) calculations based on the hybrid exchange–correlation density functional (DFT)/Hartree–Fock (HF) scheme. In addition, the local atomic structure around both Cu and W atoms has been probed using extended X-ray absorption fine structure (EXAFS) spectroscopy. We show that, by using the hybrid DFT–HF functional, one can accurately and simultaneously describe the atomic structure (the unit cell parameters and the atomic fractional coordinates), the band gap and the phonon frequencies. In agreement w…

Materials sciencePolymers and PlasticsCondensed matter physicsMetals and AlloysAb initio02 engineering and technologyTriclinic crystal system021001 nanoscience & nanotechnologyFractional coordinates01 natural sciencesMolecular physicsElectronic Optical and Magnetic MaterialsAtomic orbitalddc:670Linear combination of atomic orbitalsAb initio quantum chemistry methods0103 physical sciencesPhysics::Atomic and Molecular ClustersCeramics and Composites010306 general physics0210 nano-technologySpectroscopyElectronic band structureActa Materialia
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Changes of lead silicate glasses induced by leaching

1998

Abstract The structural differences in the surface region between freshly fractured and leached silicate glasses containing 16.7, 18.8 and 44.4 mol% PbO, respectively, were investigated by photoelectron spectroscopy (XPS). The optical properties and the thicknesses of leached layers were determined by reflection measurements. The binding energies of the O1s signal components for untreated samples can be ascribed to non-bridging (NBO) and bridging (BO) oxygen and oxygen associated with lead as network former (OPb). The binding energy of OPb was found to be 529.1 ± 0.2 eV. For quantitative conclusions, relative XPS sensitivity factors were determined for oxygen, silicon and lead in these glas…

Materials scienceSiliconBinding energyAnalytical chemistryLessivagechemistry.chemical_elementCondensed Matter PhysicsOxygenElectronic Optical and Magnetic MaterialsSilanolchemistry.chemical_compoundX-ray photoelectron spectroscopychemistryMaterials ChemistryCeramics and CompositesOrganic chemistryLeaching (metallurgy)Natural bond orbitalJournal of Non-Crystalline Solids
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First-principles study of bulk and surface oxygen vacancies in SrTiO3 crystal

2009

The structural and electronic properties of the neutral and positively charged oxygen vacancies (F and F + centres) in the bulk and on the (001) surfaces of SrTiO3 crystal are examined within the hybrid Hartree-Fock and density functional theory (HF-DFT) method based upon the linear combination of atomic orbital (LCAO) approach. A comparison of the formation energy for surface and bulk defects indicates a perceptible propensity for the segregation of neutral and charged vacancies to both SrO and TiO2 surface terminations with a preference in the latter case which is important for interpretation of space charge effects at ceramic interfaces. It is found that the vacancies reveal more shallow…

Materials scienceSolid-state physicsBand gapElectronic structureCondensed Matter PhysicsSpace chargeElectronic Optical and Magnetic MaterialsCrystalCondensed Matter::Materials ScienceAtomic orbitalLinear combination of atomic orbitalsChemical physicsPhysics::Atomic and Molecular ClustersDensity functional theoryAtomic physicsThe European Physical Journal B
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Hybrid density functional theoretical study of NASICON-type NaxTi2(PO4)3 (x = 1–4)

2020

Sodium Super Ionic Conductor (NASICON) structured phosphate framework compounds represent a very attractive class of materials for their use as Na-ion battery electrodes. A series of NASICON-structured NaxTi2(PO4)3 compounds corresponding to varying degrees of sodiation (x = 1–4) have been investigated using high-level hybrid density functional theory calculations using the Linear Combination of Atomic Orbitals and Gaussian-type basis set formalism together with hybrid B1WC and HSE06 exchange–correlation functionals. Using primitive cells of NaxTi2(PO4)3 compounds with different stoichiometry, sodium sublattice structure and titanium oxidation states are constructed and analyzed using group…

Materials scienceValence (chemistry)Band gapGeneral Physics and AstronomyIonic bonding02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesCharge orderingChemical physicsLinear combination of atomic orbitalsDensity functional theoryElectron configurationPhysical and Theoretical Chemistry0210 nano-technologyBasis setPhysical Chemistry Chemical Physics
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Tuning the hole injection barrier in the intermolecular charge-transfer compoundDTBDT-F4TCNQ at metal interfaces

2014

Molecular monolayers of the charge-transfer salt dithienobenzodithiophene-tetrafluorotetracyanoquinodimethane (DTBDT-F${}_{4}$TCNQ) have been deposited on C(R$15\ifmmode\times\else\texttimes\fi{}3$)/W(110), Co/W(110), and hcp Co(0001) using molecular beam epitaxy in an ultrahigh vacuum. The integrity of the deposited molecules has been confirmed by scanning tunneling microscopy. Scanning tunneling spectroscopy has been used to determine the energetic positions of the highest occupied (HOMO) and lowest unoccupied (LUMO) molecular orbital of acceptor and donor in the pure and in the mixed phase. The mixed charge transfer phase exhibits a new HOMO close to the Fermi edge depicting a charge tra…

Materials sciencebusiness.industryBand gapScanning tunneling spectroscopyBinding energyCondensed Matter PhysicsElementary chargeAcceptorElectronic Optical and Magnetic Materialslaw.inventionCrystallographylawOptoelectronicsMolecular orbitalScanning tunneling microscopebusinessHOMO/LUMOPhysical Review B
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Local Bonding Influence on the Band Edge and Band Gap Formation in Quaternary Chalcopyrites

2017

Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. Inspired by these observations, the underlying structural and electronic considerations are investigated using a combination of experimentally obtained structural data, molecular orbital considerations, and density functional theory. Within the solid solution Cu2ZnGeS4-x Se x , the anion bond alteration parameter changes, showing larger bond lengths for metal-selenium than for metal-sulfur bonds. The changing bonding interaction directly influences the valence and conduction band edges, which result from antibonding Cu-anion and Ge-anion interactions, respectively. The knowledge of the underlyi…

Materials sciencechalcopyritesBand gapGeneral Chemical Engineeringband engineeringGeneral Physics and AstronomyMedicine (miscellaneous)Mineralogy02 engineering and technology010402 general chemistry01 natural sciencesBiochemistry Genetics and Molecular Biology (miscellaneous)Thermoelectric effectGeneral Materials ScienceMolecular orbitalValence (chemistry)Full PaperGeneral EngineeringFull Papers021001 nanoscience & nanotechnologyAntibonding molecular orbitalThermoelectric materials0104 chemical sciencesBond lengthphotovoltaicsChemical physicsDensity functional theory0210 nano-technologylocal bond influencethermoelectricsAdvanced Science
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