The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-ultraviolet due to strongly bound excitons. These spectral features can be utilized as a sensitive probe of carrier and lattice dynamics inside the TiO2 nanoparticles. Here, we implement ultrafast broadband spectroscopy tuned to the exciton resonances in order to track the electron cooling in the conduction band of bare anatase nanoparticles and monitor the electron injection dynamics from an external dye in the case of sensitized anatase nanoparticles
The ultrafast electron-transfer (ET) processes in three dye-sensitized TiO2 systems (pycooh-, catech...
The photophysics surrounding the electron and hole trapping in TiO2 do not have a scientific consens...
The relaxation dynamics of charge carriers of organic capped TiO2 nanorods dispersed in chloroform w...
The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
Anatase TiO₂ is among the most studied materials for light-energy conversion applications, but the ...
Concept: The excitation-dependent relaxation dynamics of charge carriers in anatase TiO2 nanorods (N...
Materials with improved catalytic efficiency can be designed based on a more thorough understanding ...
Elucidating the carrier density at which strongly bound excitons dissociate into a plasma of uncorre...
The charge injection dynamics of dye sensitization from a surface-bound dye (coumarin 343 (C343)) to...
We have investigated the interfacial electron-transfer dynamics in ultrasmall TiO<SUB>2</SUB> nanopa...
The coherent manipulation of excitons in bulk semiconductors via the lattice degrees of freedom is k...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
The ultrafast electron-transfer (ET) processes in three dye-sensitized TiO2 systems (pycooh-, catech...
The photophysics surrounding the electron and hole trapping in TiO2 do not have a scientific consens...
The relaxation dynamics of charge carriers of organic capped TiO2 nanorods dispersed in chloroform w...
The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
Anatase TiO₂ is among the most studied materials for light-energy conversion applications, but the ...
Concept: The excitation-dependent relaxation dynamics of charge carriers in anatase TiO2 nanorods (N...
Materials with improved catalytic efficiency can be designed based on a more thorough understanding ...
Elucidating the carrier density at which strongly bound excitons dissociate into a plasma of uncorre...
The charge injection dynamics of dye sensitization from a surface-bound dye (coumarin 343 (C343)) to...
We have investigated the interfacial electron-transfer dynamics in ultrasmall TiO<SUB>2</SUB> nanopa...
The coherent manipulation of excitons in bulk semiconductors via the lattice degrees of freedom is k...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
The ultrafast electron-transfer (ET) processes in three dye-sensitized TiO2 systems (pycooh-, catech...
The photophysics surrounding the electron and hole trapping in TiO2 do not have a scientific consens...
The relaxation dynamics of charge carriers of organic capped TiO2 nanorods dispersed in chloroform w...