In traditional solar cells, photogenerated energetic carriers (so-called hot carriers) rapidly relax to band edges via emission of phonons, prohibiting the extraction of their excess energy above the band gap. Quantum confined semiconductor nanocrystals, or quantum dots (QDs), were predicted to have long-lived hot carriers enabled by a phonon bottleneck, i.e., the large inter-level spacings in QDs should result in inefficient phonon emissions. Here we study the effect of quantum confinement on hot carrier/ exciton lifetime in lead halide perovskite nanocrystals. We synthesized a series of strongly confined CsPbBr3 nanocrystals with edge lengths down to 2.6 nm, the smallest reported to date, and studied their hot exciton relaxation using ult...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Hot phonon bottleneck (HPB), one of the dominant effects for tuning hot carrier (HC) cooling, has be...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...
In this thesis, we describe our work discovering perovskite nanocrystals with desirable optoelectron...
The relaxation of the above-gap (“hot”) carriers in lead halide perovskites (LHPs) is important for ...
The relaxation of the above-gap (“hot”) carriers in lead halide perovskites (LHPs) is important for ...
The conversion efficiency of solar energy in semiconductors is fundamentally limited by ultrafast ho...
Colloidal nanocrystals (NCs) of lead halide perovskites are considered highly promising materials th...
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more elect...
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more elect...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more elect...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Observations of the hot-phonon bottleneck, which is predicted to slow the rate of hot carrier coolin...
Carrier cooling is of widespread interest in the field of semiconductor science. It is linked to car...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Hot phonon bottleneck (HPB), one of the dominant effects for tuning hot carrier (HC) cooling, has be...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...
In this thesis, we describe our work discovering perovskite nanocrystals with desirable optoelectron...
The relaxation of the above-gap (“hot”) carriers in lead halide perovskites (LHPs) is important for ...
The relaxation of the above-gap (“hot”) carriers in lead halide perovskites (LHPs) is important for ...
The conversion efficiency of solar energy in semiconductors is fundamentally limited by ultrafast ho...
Colloidal nanocrystals (NCs) of lead halide perovskites are considered highly promising materials th...
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more elect...
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more elect...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Multiple exciton generation (MEG) or carrier multiplication, a process that spawns two or more elect...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Observations of the hot-phonon bottleneck, which is predicted to slow the rate of hot carrier coolin...
Carrier cooling is of widespread interest in the field of semiconductor science. It is linked to car...
The slowdown of carrier cooling in lead halide perovskites (LHP) may allow the realization of effici...
Hot phonon bottleneck (HPB), one of the dominant effects for tuning hot carrier (HC) cooling, has be...
We combine state-of-the-art ultrafast photoluminescence and absorption spectroscopy and nonadiabatic...