We present a time-dependent density functional theory (TDDFT) investigation of the solvent effect on the light absorption of metal nanoparticles and on their efficiency as excitation energy transfer (EET) acceptors from organic dyes. The calculations consider both the dye and the metal particle at quantum-mechanical (QM) level, thus including quantum size effects. The results are compared to those of a second method that exploits a continuous dielectric model for the metal nanoparticle while keeping the same QM level for the dye. Both methods use the polarizable continuum model (PCM) for the solvent. The comparison of these two approaches for gold and silver nanoparticles has clarified how their different electronic nature specifically coup...
The optical properties of hybrid systems composed of silver nanoparticles (NPs) and azobenzene molec...
Resumen del trabajo presentado al CECAM workshop on: "Computational plasmonics: an ab initio and mul...
Quantum chemical calculations providing detailed information of dye-sensitized semiconductor nanocry...
Metal nanoparticles (MNPs) can have a dramatic effect on the electronic energy transfer (EET) betwee...
Problem statement: Metal nanoparticles confine the motion of conduction electrons and exhibit a stro...
We present a time-dependent density functional theory investigation of the excitation energy transfe...
Metal nanoparticles have attracted considerable attention owing to their unusual physical and chemic...
Large, complex chemical and material systems are extremely difficult to calculate with current densi...
TheabilityofFo ̈rstertheorytodescribeelectronicenergytransferrates,andtheirsolvent-dependence, have ...
We present a quantum-mechanical study of the photoactivity of nanoscale architectures based on dithi...
205 p.This thesis theoretically addresses the optoelectronic response of metallic nanoparticles (MNP...
Plasmon resonances of metal nanoparticles arranged in arrays are known to be coupled, yielding optic...
Organometallic nanoparticles composed by metal cores with sizes under two nanometers covered with or...
We present a comparative study on the influence of the quantum mechanical QM method including basis ...
A direct estimate of changes in the radiative and nonradiative decay rates of a chromophore near met...
The optical properties of hybrid systems composed of silver nanoparticles (NPs) and azobenzene molec...
Resumen del trabajo presentado al CECAM workshop on: "Computational plasmonics: an ab initio and mul...
Quantum chemical calculations providing detailed information of dye-sensitized semiconductor nanocry...
Metal nanoparticles (MNPs) can have a dramatic effect on the electronic energy transfer (EET) betwee...
Problem statement: Metal nanoparticles confine the motion of conduction electrons and exhibit a stro...
We present a time-dependent density functional theory investigation of the excitation energy transfe...
Metal nanoparticles have attracted considerable attention owing to their unusual physical and chemic...
Large, complex chemical and material systems are extremely difficult to calculate with current densi...
TheabilityofFo ̈rstertheorytodescribeelectronicenergytransferrates,andtheirsolvent-dependence, have ...
We present a quantum-mechanical study of the photoactivity of nanoscale architectures based on dithi...
205 p.This thesis theoretically addresses the optoelectronic response of metallic nanoparticles (MNP...
Plasmon resonances of metal nanoparticles arranged in arrays are known to be coupled, yielding optic...
Organometallic nanoparticles composed by metal cores with sizes under two nanometers covered with or...
We present a comparative study on the influence of the quantum mechanical QM method including basis ...
A direct estimate of changes in the radiative and nonradiative decay rates of a chromophore near met...
The optical properties of hybrid systems composed of silver nanoparticles (NPs) and azobenzene molec...
Resumen del trabajo presentado al CECAM workshop on: "Computational plasmonics: an ab initio and mul...
Quantum chemical calculations providing detailed information of dye-sensitized semiconductor nanocry...