Carrier multiplication, the generation of multiple electron–hole pairs by a single photon, is of great interest for solar cells as it may enhance their photocurrent. This process has been shown to occur efficiently in colloidal quantum dots, however, harvesting of the generated multiple charges has proved difficult. Here we show that by tuning the charge-carrier mobility in quantum-dot films, carrier multiplication can be optimized and may show an efficiency as high as in colloidal dispersion. Our results are explained quantitatively by the competition between dissociation of multiple electron–hole pairs and Auger recombination. Above a mobility of ~1?cm2?V?1?s?1, all charges escape Auger recombination and are quantitatively converted to fr...
In semiconductor quantum dots (QDs), charge carrier cooling is in direct competition with carrier mu...
Colloidal quantum dot solar cells achieve spectrally selective optical absorption in a thin layer of...
Solution processed solar cells offer the promise of a low cost solution to global energy concerns. C...
Carrier multiplication, the generation of multiple electron–hole pairs by a single photon, is of gre...
Over the past two decades quantum-dot-based photovoltaic devices have been attracting a lot of atte...
Colloidal semiconductor nanoparticles, also called quantum dots, have unique opto-electronic propert...
We present calculations of impact ionization rates, carrier multiplication yields, and solar-power c...
Time Delayed Collection Field and Bias Assisted Charge Extraction (BACE) experiments are used to inv...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
In conventional solar cell semiconductor materials (predominantlySi)photons with energy higher than ...
Colloidal quantum dots (CQDs) are semiconductor crystals, the nanometre-scale size of which both all...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Increasing global energy demand requires the development of clean energy sources that will help redu...
The power conversion efficiency of solar cells sensitized with colloidal quantum dots is believed ...
Multiple exciton generation (MEG) in quantum-confined semiconductors is the process by which multipl...
In semiconductor quantum dots (QDs), charge carrier cooling is in direct competition with carrier mu...
Colloidal quantum dot solar cells achieve spectrally selective optical absorption in a thin layer of...
Solution processed solar cells offer the promise of a low cost solution to global energy concerns. C...
Carrier multiplication, the generation of multiple electron–hole pairs by a single photon, is of gre...
Over the past two decades quantum-dot-based photovoltaic devices have been attracting a lot of atte...
Colloidal semiconductor nanoparticles, also called quantum dots, have unique opto-electronic propert...
We present calculations of impact ionization rates, carrier multiplication yields, and solar-power c...
Time Delayed Collection Field and Bias Assisted Charge Extraction (BACE) experiments are used to inv...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
In conventional solar cell semiconductor materials (predominantlySi)photons with energy higher than ...
Colloidal quantum dots (CQDs) are semiconductor crystals, the nanometre-scale size of which both all...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Increasing global energy demand requires the development of clean energy sources that will help redu...
The power conversion efficiency of solar cells sensitized with colloidal quantum dots is believed ...
Multiple exciton generation (MEG) in quantum-confined semiconductors is the process by which multipl...
In semiconductor quantum dots (QDs), charge carrier cooling is in direct competition with carrier mu...
Colloidal quantum dot solar cells achieve spectrally selective optical absorption in a thin layer of...
Solution processed solar cells offer the promise of a low cost solution to global energy concerns. C...