Transition metal oxides are among the most promising solar materials, whose properties rely on the generation, transport and trapping of charge carriers (electrons and holes). Identifying the latter's dynamics at room temperature requires tools that combine elemental and structural sensitivity, with the atomic scale resolution of time (femtoseconds, fs). Here, we use fs Ti K-edge X-ray absorption spectroscopy (XAS) upon 3.49 eV (355 nm) excitation of aqueous colloidal anatase titanium dioxide nanoparticles to probe the trapping dynamics of photogenerated electrons. We find that their localization at Titanium atoms occurs in < 300 fs, forming Ti3+ centres, in or near the unit cell where the electron is created. We conclude that electron loca...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Thesis (Ph.D.), Materials Science, Washington State UniversityTitanium dioxide (TiO2) nanoparticles ...
Incorporation of dopants in semiconductors is commonly used to modify the optical response and impro...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
Carrier dynamics affects photocatalytic systems, but direct and real-time observations in an element...
We review our recent results on the implementation of picosecond (ps) X-ray absorption spectroscopy ...
Concept: The excitation-dependent relaxation dynamics of charge carriers in anatase TiO2 nanorods (N...
This thesis investigates the photoinduced charge carrier dynamics of TiO2 nanoparticles and CsPbX3 (...
The photophysics surrounding the electron and hole trapping in TiO2 do not have a scientific consens...
We have used femtosecond pump−probe spectroscopy to time resolve the injection of electrons into nan...
The mismatch between short lifetimes of free charge carriers and slow kinetics of surface redox reac...
Exploiting plasmonic Au nanoparticles to sensitize TiO2 to visible light is a widely employed route ...
The identification of lattice multiphases in TiO2 nanocrystals is studied by high resolution transmi...
Materials with improved catalytic efficiency can be designed based on a more thorough understanding ...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Thesis (Ph.D.), Materials Science, Washington State UniversityTitanium dioxide (TiO2) nanoparticles ...
Incorporation of dopants in semiconductors is commonly used to modify the optical response and impro...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
Carrier dynamics affects photocatalytic systems, but direct and real-time observations in an element...
We review our recent results on the implementation of picosecond (ps) X-ray absorption spectroscopy ...
Concept: The excitation-dependent relaxation dynamics of charge carriers in anatase TiO2 nanorods (N...
This thesis investigates the photoinduced charge carrier dynamics of TiO2 nanoparticles and CsPbX3 (...
The photophysics surrounding the electron and hole trapping in TiO2 do not have a scientific consens...
We have used femtosecond pump−probe spectroscopy to time resolve the injection of electrons into nan...
The mismatch between short lifetimes of free charge carriers and slow kinetics of surface redox reac...
Exploiting plasmonic Au nanoparticles to sensitize TiO2 to visible light is a widely employed route ...
The identification of lattice multiphases in TiO2 nanocrystals is studied by high resolution transmi...
Materials with improved catalytic efficiency can be designed based on a more thorough understanding ...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Thesis (Ph.D.), Materials Science, Washington State UniversityTitanium dioxide (TiO2) nanoparticles ...
Incorporation of dopants in semiconductors is commonly used to modify the optical response and impro...