In a conventional solar cell, the energy of an absorbed photon in excess of the band gap is rapidly lost as heat, and this is one of the main reasons that the theoretical efficiency is limited to ~33%. However, an alternative process, multiple exciton generation (MEG), can occur in colloidal quantum dots. Here, some or all of the excess energy is instead used to promote one or more additional electrons to the conduction band, potentially increasing the photocurrent of a solar cell and thereby its output efficiency. This review will describe the development of this field over the decade since the first experimental demonstration of multiple exciton generation, including the controversies over experimental artefacts, comparison with similar...
Generating multiple excitons by a single high-energy photon is a promising third-generation solar en...
Over the past two decades quantum-dot-based photovoltaic devices have been attracting a lot of atte...
Carrier (exciton) multiplication in colloidal InAs/CdSe/ZnSe core−shell quantum dots (QDs) is invest...
In a conventional solar cell, the energy of an absorbed photon in excess of the band gap is rapidly ...
Multiple exciton generation (MEG) in quantum-confined semiconductors is the process by which multipl...
Multiple exciton generation (MEG) is a process in which more than one electron hole pair is generate...
Photovoltaics are limited in their power conversion efficiency (PCE) by very rapid relaxation of ene...
Colloidal quantum dots (CQDs) are semiconductor crystals, the nanometre-scale size of which both all...
Impact ionization is a process in which absorbed photons in semiconductors that are at least twice t...
We report ultra-efficient multiple exciton generation (MEG) for single photon absorption in colloida...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...
This paper reviews both experimental and theoretical work on nanostructures showing high quantum yie...
Semiconductor quantum dots (QDs) are the subject of intensive research worldwide due to a number of ...
Semiconductor quantum dots (QDs) are the subject of intensive research worldwide due to a number of ...
Semiconductor quantum dots (QDs) are the subject of intensive research worldwide due to a number of ...
Generating multiple excitons by a single high-energy photon is a promising third-generation solar en...
Over the past two decades quantum-dot-based photovoltaic devices have been attracting a lot of atte...
Carrier (exciton) multiplication in colloidal InAs/CdSe/ZnSe core−shell quantum dots (QDs) is invest...
In a conventional solar cell, the energy of an absorbed photon in excess of the band gap is rapidly ...
Multiple exciton generation (MEG) in quantum-confined semiconductors is the process by which multipl...
Multiple exciton generation (MEG) is a process in which more than one electron hole pair is generate...
Photovoltaics are limited in their power conversion efficiency (PCE) by very rapid relaxation of ene...
Colloidal quantum dots (CQDs) are semiconductor crystals, the nanometre-scale size of which both all...
Impact ionization is a process in which absorbed photons in semiconductors that are at least twice t...
We report ultra-efficient multiple exciton generation (MEG) for single photon absorption in colloida...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...
This paper reviews both experimental and theoretical work on nanostructures showing high quantum yie...
Semiconductor quantum dots (QDs) are the subject of intensive research worldwide due to a number of ...
Semiconductor quantum dots (QDs) are the subject of intensive research worldwide due to a number of ...
Semiconductor quantum dots (QDs) are the subject of intensive research worldwide due to a number of ...
Generating multiple excitons by a single high-energy photon is a promising third-generation solar en...
Over the past two decades quantum-dot-based photovoltaic devices have been attracting a lot of atte...
Carrier (exciton) multiplication in colloidal InAs/CdSe/ZnSe core−shell quantum dots (QDs) is invest...