Carrier multiplication (CM) is a process in which a single photon excites two or more electrons. CM is of interest to enhance the efficiency of a solar cell. Until now, CM in thin films and solar cells of semiconductor nanocrystals (NCs) has been found at photon energies well above the minimum required energy of twice the band gap. The high threshold of CM strongly limits the benefits for solar cell applications. We show that CM is more efficient in a percolative network of directly connected PbSe NCs. The CM threshold is at twice the band gap and increases in a steplike fashion with photon energy. A lower CM efficiency is found for a solid of weaker coupled NCs. This demonstrates that the coupling between NCs strongly affects the CM effici...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
Sem informaçãoOne process limiting the performance of solar cells is rapid cooling (thermalization) ...
The all-inorganic perovskite nanocrystals are currently in the research spotlight owing to their phy...
Carrier multiplication (CM) is a process in which a single photon excites two or more electrons. CM ...
Carrier multiplication (CM) is a process in which a single photon excites two or more electrons. CM ...
Semiconductor nanocrystals are promising for use in cheap and highly efficient solar cells. A high e...
In conventional solar cell semiconductor materials (predominantlySi)photons with energy higher than ...
We demonstrate for the first time that impact ionization (II) (the inverse of Auger recombination) o...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
Recently, we demonstrated that PbSe nanocrystal quantum dots can efficiently produce multiple electr...
Carrier multiplication (CM) generates multiple electron-hole pairs in a semiconductor from a single ...
Nanorod solar cells have been attracting a lot of attention recently, as they have been shown to exh...
Carrier multiplication is a process in which one absorbed photon excites two or more electrons. This...
The all-inorganic perovskite nanocrystals are currently in the research spotlight owing to their phy...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
Sem informaçãoOne process limiting the performance of solar cells is rapid cooling (thermalization) ...
The all-inorganic perovskite nanocrystals are currently in the research spotlight owing to their phy...
Carrier multiplication (CM) is a process in which a single photon excites two or more electrons. CM ...
Carrier multiplication (CM) is a process in which a single photon excites two or more electrons. CM ...
Semiconductor nanocrystals are promising for use in cheap and highly efficient solar cells. A high e...
In conventional solar cell semiconductor materials (predominantlySi)photons with energy higher than ...
We demonstrate for the first time that impact ionization (II) (the inverse of Auger recombination) o...
We studied charge carrier photogeneration, cooling, carrier multiplication (CM) and charge mobility ...
Recently, we demonstrated that PbSe nanocrystal quantum dots can efficiently produce multiple electr...
Carrier multiplication (CM) generates multiple electron-hole pairs in a semiconductor from a single ...
Nanorod solar cells have been attracting a lot of attention recently, as they have been shown to exh...
Carrier multiplication is a process in which one absorbed photon excites two or more electrons. This...
The all-inorganic perovskite nanocrystals are currently in the research spotlight owing to their phy...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
Sem informaçãoOne process limiting the performance of solar cells is rapid cooling (thermalization) ...
The all-inorganic perovskite nanocrystals are currently in the research spotlight owing to their phy...