Carrier trapping in colloidal nanocrystals represents a major energy loss mechanism for excitonic states crucial to devices. Surprisingly little is known about the influence of the spin degree of freedom on the nature of these intrinsic trap centers or the types of coupling that these states experience. Here, a pulsed microwave optically detected magnetic resonance study is presented that aims to probe the interaction pathways existing between shallow band-edge trap states and the deep-level emissive chemical defect states responsible for the broad, low-energy emission common to CdS nanocrystals. Due to long spin coherence times (T2) of these states, Rabi flopping detected in the luminescence under magnetic resonance provides access to info...
We studied the oscillator strength f(gap) of the band gap transition in heteronanocrystals (hNCs) wi...
Surface traps significantly influence the charge carrier dynamics within semiconductor nanocrystals,...
Surface traps significantly influence the charge carrier dynamics within semiconductor nanocrystals,...
Carrier trapping in colloidal nanocrystals represents a major energy loss mechanism for excitonic st...
dissertationThe forefront of current nanoscience initiatives includes the investigation and developm...
Large surface-to-volume ratios of semiconductor nanocrystals cause susceptibility to charge trapping...
A new detection technique, pump-spin orientation-probe ultrafast spectroscopy, is developed to study...
The surface of nominally diamagnetic colloidal CdSe nanoplatelets can demonstrate para-magnetism owi...
Since their discovery in the 1980s, colloidal semiconductor nanocrystals have been intensely studied...
A new detection technique, pump-spin orientation-probe ultrafast spectroscopy, is developed to study...
Copper-doped II-VI and copper-based I-III-VI2colloidal quantum dots (CQDs) have been at the forefron...
The surface of nominally diamagnetic colloidal CdSe nanoplatelets can demonstrate paramagnetic behav...
Copper-doped II-VI and copper-based I-III-VI2colloidal quantum dots (CQDs) have been at the forefron...
In this work we present spectroscopic studies of the exciton dynamics in colloidal spherical cadmium...
The band-edge exciton in elongated CdSe nanocrystals is composed of an upper and lower manifold asso...
We studied the oscillator strength f(gap) of the band gap transition in heteronanocrystals (hNCs) wi...
Surface traps significantly influence the charge carrier dynamics within semiconductor nanocrystals,...
Surface traps significantly influence the charge carrier dynamics within semiconductor nanocrystals,...
Carrier trapping in colloidal nanocrystals represents a major energy loss mechanism for excitonic st...
dissertationThe forefront of current nanoscience initiatives includes the investigation and developm...
Large surface-to-volume ratios of semiconductor nanocrystals cause susceptibility to charge trapping...
A new detection technique, pump-spin orientation-probe ultrafast spectroscopy, is developed to study...
The surface of nominally diamagnetic colloidal CdSe nanoplatelets can demonstrate para-magnetism owi...
Since their discovery in the 1980s, colloidal semiconductor nanocrystals have been intensely studied...
A new detection technique, pump-spin orientation-probe ultrafast spectroscopy, is developed to study...
Copper-doped II-VI and copper-based I-III-VI2colloidal quantum dots (CQDs) have been at the forefron...
The surface of nominally diamagnetic colloidal CdSe nanoplatelets can demonstrate paramagnetic behav...
Copper-doped II-VI and copper-based I-III-VI2colloidal quantum dots (CQDs) have been at the forefron...
In this work we present spectroscopic studies of the exciton dynamics in colloidal spherical cadmium...
The band-edge exciton in elongated CdSe nanocrystals is composed of an upper and lower manifold asso...
We studied the oscillator strength f(gap) of the band gap transition in heteronanocrystals (hNCs) wi...
Surface traps significantly influence the charge carrier dynamics within semiconductor nanocrystals,...
Surface traps significantly influence the charge carrier dynamics within semiconductor nanocrystals,...