Silicon is one of the most dominant materials in photovoltaics. To increase optical absorption of silicon solar cells, colloidal quantum dots (QDs) have been proposed as a good sensitizer candidate owing to their favorably high absorption cross-section and tunable emission and absorption properties. To this end, QD sensitization of silicon has previously been studied by mostly facilitating radiative energy transfer (RET) [1,2]. Although RET based sensitization has achieved a considerable increase in conversion efficiencies in silicon photovoltaics, RET is fundamentally limited due to the effective coupling problem of emitted photons to silicon. Alternatively, nonradiative energy transfer (NRET), which relies on near field dipole-dipole coup...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicond...
Cataloged from PDF version of article.We report enhanced sensitization of silicon through nonradiati...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We show enhanced transfer of excitons from the energy-gradient of bilayered green/red-emitting quant...
In this work, we used bulk monocrystalline p-type Si (100) substrate as the acceptor and core/shell ...
In this work, we used bulk monocrystalline p-type Si (100) substrate as the acceptor and core/shell ...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Cataloged from PDF version of article.We study phonon-assisted Forster resonance energy transfer (FR...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
We use time-resolved photoluminescence (PL) kinetics and PL intensity measurements to study the deca...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicond...
Cataloged from PDF version of article.We report enhanced sensitization of silicon through nonradiati...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We show enhanced transfer of excitons from the energy-gradient of bilayered green/red-emitting quant...
In this work, we used bulk monocrystalline p-type Si (100) substrate as the acceptor and core/shell ...
In this work, we used bulk monocrystalline p-type Si (100) substrate as the acceptor and core/shell ...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Cataloged from PDF version of article.We study phonon-assisted Forster resonance energy transfer (FR...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
We use time-resolved photoluminescence (PL) kinetics and PL intensity measurements to study the deca...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We study phonon-assisted Förster resonance energy transfer (FRET) into an indirect band-gap semicond...