Plasmonic sensitization of semiconductors is an attractive approach to increase light-induced photocatalytic performance; one method is to use plasmonic nanostructures in core@shell geometry. The occurrence and mechanism of synergetic effects in photocatalysis of such geometries are under intense debate and proposed to occur either through light-induced charge transfer (CT) or through thermal effects. This study focuses on the relation between the dimensions of Ag@CeO2 nanocubes, the wavelength-dependent efficiency, and the mechanism of light-induced direct CT. A 4-mercaptobenzoic acid (4-MBA) linker between core and shell acts as a Raman probe for CT. For all Ag@CeO2 nanocubes, CT increases with decreasing excitation wavelength, with notab...
The behaviour of the plasmonic modes of supported strongly coupled silver nanocubes is studied. Silv...
Most syntheses of advanced materials require accurate control of the operating temperature. Plasmon ...
This work reports an electron beam irradiation (30 kGy and 90 kGy) approach to narrow the band gap o...
Plasmonic sensitization of semiconductors is an attractive approach to increase light-induced photoc...
Compared to pristine Cu<sub>2</sub>O nanoparticles (NPs), Ag@Cu<sub>2</sub>O core-shell NPs exhibit ...
This thesis primarily focuses on photophysics of charge and energy transfer in plasmonic structures....
The combination of semiconducting oxide-based materials with plasmonic nanoparticles (NPs) aims to e...
The coupling with plasmonic metal nanoparticles (NPs) represents a promising opportunity to sensitiz...
Expanding the activity of wide bandgap semiconductors from the UV into the visible range has become ...
Expanding the activity of wide bandgap semiconductors from the UV into the visible range has become ...
Structure–function correlations are a central theme in heterogeneous (photo)catalysis. In this stud...
Wide bandgap oxides can be sensitized to visible light by coupling them with plasmonic nanoparticles...
Noble metal nanoparticles support localized surface plasmon resonances (LSPRs), which are light-driv...
Noble metal nanoparticles support localized surface plasmon resonances (LSPRs), which are light-driv...
We report the contribution of oxygen vacancies for enhancing the optical and visible photocatalytic ...
The behaviour of the plasmonic modes of supported strongly coupled silver nanocubes is studied. Silv...
Most syntheses of advanced materials require accurate control of the operating temperature. Plasmon ...
This work reports an electron beam irradiation (30 kGy and 90 kGy) approach to narrow the band gap o...
Plasmonic sensitization of semiconductors is an attractive approach to increase light-induced photoc...
Compared to pristine Cu<sub>2</sub>O nanoparticles (NPs), Ag@Cu<sub>2</sub>O core-shell NPs exhibit ...
This thesis primarily focuses on photophysics of charge and energy transfer in plasmonic structures....
The combination of semiconducting oxide-based materials with plasmonic nanoparticles (NPs) aims to e...
The coupling with plasmonic metal nanoparticles (NPs) represents a promising opportunity to sensitiz...
Expanding the activity of wide bandgap semiconductors from the UV into the visible range has become ...
Expanding the activity of wide bandgap semiconductors from the UV into the visible range has become ...
Structure–function correlations are a central theme in heterogeneous (photo)catalysis. In this stud...
Wide bandgap oxides can be sensitized to visible light by coupling them with plasmonic nanoparticles...
Noble metal nanoparticles support localized surface plasmon resonances (LSPRs), which are light-driv...
Noble metal nanoparticles support localized surface plasmon resonances (LSPRs), which are light-driv...
We report the contribution of oxygen vacancies for enhancing the optical and visible photocatalytic ...
The behaviour of the plasmonic modes of supported strongly coupled silver nanocubes is studied. Silv...
Most syntheses of advanced materials require accurate control of the operating temperature. Plasmon ...
This work reports an electron beam irradiation (30 kGy and 90 kGy) approach to narrow the band gap o...