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Molecular photoreactivity on metal-oxide surfaces from first-principles: photocathalysis and photovoltaics

AutorLara Castells, María Pilar de ; Aguirre, Néstor F. ; López Durán, David; Ortega Mateo, José; Mitrushchenkov, Alexander O.
Palabras claveMolecular photoreactivity
Metal-Oxide surfaces
Ab-initio Surface Photochemistry
Excited states in extended systems
Local Correlation approaches
Quantum Control
TiO2-based materials
Solar Cells
Fecha de publicaciónfeb-2010
ResumenThe international workshop "Molecular Photoreactivity on Metal-Oxide Surfaces from First-Principles: Photo-catalysis and Photovoltaics" is intended to bring together scientists from around the world, either to present the latest advances of their research in the field or, research from related areas (e.g., molecular photoreactivity and electronic structure methods in gas-phase and gas/metal interfaces). Although the conference has a fundamental theoretical character, experimentalists are also invited to participate, to highlight problems that might stimulate the development of new (first-principles) methodological strategies and combined experimental/theoretical studies of model systems. The main session of the meeting will be dedicated to electronic structure methodologies/strategies and computational methods to "attack" the problem of calculating excited states of molecule/metal-oxide surfaces and interfaces, including Local Correlation-Cluster (LCC) approaches, Time Dependent Density Functional Theory (TDDFT) based treatments, or ab-initio Molecular Dynamics (MD) techniques. Special topics will include electronic charge transfer processes (e.g., the electron injection mechanism) in dye-sensitivized semiconductors (such as TiO2), novel deposition treatments on the surface of nano-particles or nano-structured surface metal-oxides (e.g., using helium nanodroplets), and quantum control techniques to address selectively the outcome of photo-reactions on metal-oxide surfaces.
DescripciónWorkshop FPMPMO-2009 ; December 4-5 (2009) Madrid, Spain ; Ils., 93 p.
Versión del editorhttp://www.iff.csic.es/fama/con/FPMPMO-2009/
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