Abstract Nonradiative processes govern efficiencies of semiconductor nanocrystal (NC)-based devices. A central process is hot exciton cooling, or the nonradiative relaxation of a highly excited electron/hole pair to form a band-edge exciton. Due to quantum confinement effects, the timescale and mechanism of cooling are not well understood. A mismatch between electronic energy gaps and phonon frequencies has led to the hypothesis of a phonon bottleneck and extremely slow cooling, while enhanced electron-hole interactions have suggested ultrafast cooling. Experimental measurements of the cooling timescale range six orders of magnitude. Here, we develop an atomistic approach to describe phonon-mediated exciton dynamics and simulate cooling in ...
The typical energy separation between D-like and P-like electronic states in CdSe nanocrystals is of...
Absorption of photons by a semiconductor with an energy exceeding the band gap transition results in...
Hot electrons can dramatically improve the efficiency of solar cells and sensitize energetically-dem...
Semiconductor nanocrsytals (NCs) have been of much interest over the past several decades due to the...
The description of carrier dynamics in spatially confined semiconductor nanocrystals (NCs), which ha...
In traditional solar cells, photogenerated energetic carriers (so-called hot carriers) rapidly relax...
Exciton dynamics within the band-edge state manifold of CdSe/ZnS and CdSe/CdS quantum dots (QDs) hav...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...
Temperature-dependent dynamics of phonon-assisted relaxation of hot carriers, both electrons and hol...
The cooling dynamics of hot charge carriers in colloidal lead chalcogenide nanocrystals is studied b...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Semiconductor quantum wells are ubiquitous in high performance optoelectronic devices such as solar ...
Ultrafast transient absorption spectroscopy was employed to investigate intraband relaxation and coh...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
The typical energy separation between D-like and P-like electronic states in CdSe nanocrystals is of...
Absorption of photons by a semiconductor with an energy exceeding the band gap transition results in...
Hot electrons can dramatically improve the efficiency of solar cells and sensitize energetically-dem...
Semiconductor nanocrsytals (NCs) have been of much interest over the past several decades due to the...
The description of carrier dynamics in spatially confined semiconductor nanocrystals (NCs), which ha...
In traditional solar cells, photogenerated energetic carriers (so-called hot carriers) rapidly relax...
Exciton dynamics within the band-edge state manifold of CdSe/ZnS and CdSe/CdS quantum dots (QDs) hav...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...
Temperature-dependent dynamics of phonon-assisted relaxation of hot carriers, both electrons and hol...
The cooling dynamics of hot charge carriers in colloidal lead chalcogenide nanocrystals is studied b...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Semiconductor quantum wells are ubiquitous in high performance optoelectronic devices such as solar ...
Ultrafast transient absorption spectroscopy was employed to investigate intraband relaxation and coh...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
The typical energy separation between D-like and P-like electronic states in CdSe nanocrystals is of...
Absorption of photons by a semiconductor with an energy exceeding the band gap transition results in...
Hot electrons can dramatically improve the efficiency of solar cells and sensitize energetically-dem...