In multielectron photocatalytic reactions, an absorbed photon triggers charge transfer from the light-harvester to the attached catalyst, leaving behind a charge of the opposite sign in the light-harvester. If this charge is not scavenged before the absorption of the following photons, photoexcitation generates not neutral but charged excitons from which the extraction of charges should become more difficult. This is potentially an efficiency-limiting intermediate event in multielectron photocatalysis. To study the charge dynamics in this event, we doped CdS nanocrystal quantum dots (QDs) with an extra electron and measured hole transfer from <i>n</i>-doped QDs to attached acceptors. We find that the Auger decay of charged excitons lowers t...
Colloidal semiconductor–metal nanoheterostructures that combine the light-harvesting ability of semi...
Metastable multiexcitonic states (MESs) of semiconductor quantum dots can be involved in multielectr...
The first step in light-driven multielectron redox catalysis driven by semiconductor nanocrystals is...
The overall efficiency of multielectron photocatalytic reactions is often much lower than the charge...
Photoexcited charge transfer from semiconductor nanocrystals to charge acceptors is a key step for p...
Although quantum confined nanomaterials, such as quantum dots (QDs) have emerged as a new class of l...
Photoexcited charge transfer is essential to light energy conversion processes in photosynthesis and...
Understanding electronic dynamics in multiexcitonic quantum dots (QDs) is important for designing ef...
Nanocrystal surface functionalization is becoming widespread for applications exploiting fast charge...
Harnessing the energy in photoexcitations requires efficient and controlled charge separation whethe...
In large molecular systems such as DNA, supramolecular complexes and dendrimers, functional groups l...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
Hybrid semiconductor–metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Ultrafast transient absorption spectroscopy was used to investigate the nature of photoinduced charg...
Extra charges in semiconductor nanocrystals are of paramount importance for their electrically drive...
Colloidal semiconductor–metal nanoheterostructures that combine the light-harvesting ability of semi...
Metastable multiexcitonic states (MESs) of semiconductor quantum dots can be involved in multielectr...
The first step in light-driven multielectron redox catalysis driven by semiconductor nanocrystals is...
The overall efficiency of multielectron photocatalytic reactions is often much lower than the charge...
Photoexcited charge transfer from semiconductor nanocrystals to charge acceptors is a key step for p...
Although quantum confined nanomaterials, such as quantum dots (QDs) have emerged as a new class of l...
Photoexcited charge transfer is essential to light energy conversion processes in photosynthesis and...
Understanding electronic dynamics in multiexcitonic quantum dots (QDs) is important for designing ef...
Nanocrystal surface functionalization is becoming widespread for applications exploiting fast charge...
Harnessing the energy in photoexcitations requires efficient and controlled charge separation whethe...
In large molecular systems such as DNA, supramolecular complexes and dendrimers, functional groups l...
Carrier multiplication (CM) is a process in which absorption of a single photon produces not just on...
Hybrid semiconductor–metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Ultrafast transient absorption spectroscopy was used to investigate the nature of photoinduced charg...
Extra charges in semiconductor nanocrystals are of paramount importance for their electrically drive...
Colloidal semiconductor–metal nanoheterostructures that combine the light-harvesting ability of semi...
Metastable multiexcitonic states (MESs) of semiconductor quantum dots can be involved in multielectr...
The first step in light-driven multielectron redox catalysis driven by semiconductor nanocrystals is...