Using a combination of transient photoluminescence and transient cathodoluminescence (trCL) we, for the first time, identify and quantify the distribution of electronic excitations in colloidal semiconductor nanocrystals (NCs) under high-energy excitation. Specifically, we compare the temporally and spectrally resolved radiative recombination produced following excitation with 3.1 eV, subpicosecond photon pulses, or with ionizing radiation in the form of 20 keV picosecond electron pulses. Using this approach, we derive excitation branching ratios produced in the scenario of energetic excitation of NCs typical of X-ray, neutron, or gamma-ray detectors. Resultant trCL spectra and dynamics for CdSe NCs indicate that all observable emission can...
We report measurements of multiple exciton generation and recombination in InP/CdS (core/shell) coll...
Multiple exciton physics in semiconductor nanocrystals play an important role in optoelectronic devi...
International audienceWe investigate the relationship between the multiexponential photoluminescence...
Nonradiative Auger recombination is the primary exciton loss mechanism in colloidal nanocrystals and...
CdSe/CdS colloidal nanocrystals are members of a novel class of light-emitting nanoparticles with re...
We studied photoluminescence (PL) of colloidal CdSe quantum dots (QDs) synthesized by a single-step ...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
CdSe/CdS colloidal nanocrystals are light-emitting nanoparticles with remarkable optical properties ...
Fast timing has emerged as a critical requirement for radiation detection in medical and high energy...
Single-nanocrystal and ensemble photoluminescence measurements on CuInS<sub>2</sub> semiconductor na...
The time-resolved photoluminescence of semiconductor nanocrystals was obtained as a function of lase...
In semiconductor nanocrystals, excited electrons relax through multiple radiative and nonradiative p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
We report a time-resolved study of the photoluminescence of CdSe colloidal nanoplatelets with two di...
We report measurements of multiple exciton generation and recombination in InP/CdS (core/shell) coll...
Multiple exciton physics in semiconductor nanocrystals play an important role in optoelectronic devi...
International audienceWe investigate the relationship between the multiexponential photoluminescence...
Nonradiative Auger recombination is the primary exciton loss mechanism in colloidal nanocrystals and...
CdSe/CdS colloidal nanocrystals are members of a novel class of light-emitting nanoparticles with re...
We studied photoluminescence (PL) of colloidal CdSe quantum dots (QDs) synthesized by a single-step ...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
CdSe/CdS colloidal nanocrystals are light-emitting nanoparticles with remarkable optical properties ...
Fast timing has emerged as a critical requirement for radiation detection in medical and high energy...
Single-nanocrystal and ensemble photoluminescence measurements on CuInS<sub>2</sub> semiconductor na...
The time-resolved photoluminescence of semiconductor nanocrystals was obtained as a function of lase...
In semiconductor nanocrystals, excited electrons relax through multiple radiative and nonradiative p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
We report a time-resolved study of the photoluminescence of CdSe colloidal nanoplatelets with two di...
We report measurements of multiple exciton generation and recombination in InP/CdS (core/shell) coll...
Multiple exciton physics in semiconductor nanocrystals play an important role in optoelectronic devi...
International audienceWe investigate the relationship between the multiexponential photoluminescence...