The resonant electronic energy transfer from an excited semiconductor quantum well to a nearby strongly absorbing organic medium may occur on time scales of several tens of picoseconds for II-VI semiconductors and of several hundreds picoseconds for III-V semiconductors, which is in both cases significantly less than the semiconductor excitation life-time in the absence of such a transfer. Thus, a large fraction of the semiconductor excitation energy can be transfered to the organic medium. Due to energy transfer the non-radiative processes in the semiconductor quantum well. with characteristic times larger than that of the energy transfer, will be suppressed. The advantage of the hybrid structures would be also the combination of comparati...
The geometry-dependent energy transfer rate from an electrically pumped inorganic semiconductor quan...
The geometry-dependent energy transfer rate from an electrically pumped inorganic semiconductor quan...
The search for efficient materials for organic light emitting diodes is one of the most imperative r...
The resonant electronic energy transfer from an excited semiconductor quantum well to a nearby stron...
We present the highlights of a research programme on hybrid inorganic-organic light emitters. These ...
We present the highlights of a research programme on hybrid inorganic-organic light emitters. These ...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
We present the highlights of a research programme on hybrid inorganic-organic light emitters. These ...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
We present the highlights of a research programme on hybrid inorganic–organic light emitters. These ...
This paper is about non-radiative energy transfer from an inorganic quantum well to a polymer overla...
This paper is about non-radiative energy transfer from an inorganic quantum well to a polymer overla...
University of Minnesota Ph.D. dissertation. August 2013. Major: Electrical engineering. Advisor: Ste...
Understanding the factors controlling radiative and non-radiative transition rates for charge transf...
The dependence of resonance energy transfer from Wannier-Mott excitons to an organic overlayer on ex...
The geometry-dependent energy transfer rate from an electrically pumped inorganic semiconductor quan...
The geometry-dependent energy transfer rate from an electrically pumped inorganic semiconductor quan...
The search for efficient materials for organic light emitting diodes is one of the most imperative r...
The resonant electronic energy transfer from an excited semiconductor quantum well to a nearby stron...
We present the highlights of a research programme on hybrid inorganic-organic light emitters. These ...
We present the highlights of a research programme on hybrid inorganic-organic light emitters. These ...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
We present the highlights of a research programme on hybrid inorganic-organic light emitters. These ...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
We present the highlights of a research programme on hybrid inorganic–organic light emitters. These ...
This paper is about non-radiative energy transfer from an inorganic quantum well to a polymer overla...
This paper is about non-radiative energy transfer from an inorganic quantum well to a polymer overla...
University of Minnesota Ph.D. dissertation. August 2013. Major: Electrical engineering. Advisor: Ste...
Understanding the factors controlling radiative and non-radiative transition rates for charge transf...
The dependence of resonance energy transfer from Wannier-Mott excitons to an organic overlayer on ex...
The geometry-dependent energy transfer rate from an electrically pumped inorganic semiconductor quan...
The geometry-dependent energy transfer rate from an electrically pumped inorganic semiconductor quan...
The search for efficient materials for organic light emitting diodes is one of the most imperative r...