We demonstrate that colloidal quantum dots of CdSe and CdSe/ZnS are detected during the photooxidation of MeOH, under broad spectrum illumination (250 mW/cm2). The stepwise photocurrent vs. time response corresponds to single entities adsorbing to the Pt electrode surface irreversibly. The adsorption/desorption of the QDs and the nature of the single entities is discussed. In suspensions, the QDs behave differently depending on the solvent used to suspend the materials. For MeOH, CdSe is not as stable as CdSe/ZnS under constant illumination. The photocurrent expected for single QDs is discussed. The value of the observed photocurrents, > 1 pA is due to the formation of agglomerates consistent with the collision frequency and suspension s...
Achieving control of the surface chemistry of colloidal quantum dots (CQDs) is essential to fully ex...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
With increased interest in semiconductor nanoparticles for use in quantum dot solar cells there come...
The development of more efficient photovoltaic devices is crucial in order to harness the abundant s...
The research work in this dissertation is focused on the study of the semiconductor nanoparticles (N...
The optical properties of colloidal semiconductor nanocrystals are largely influenced by the trappin...
Understanding the mechanisms for photodegradation of nanocrystal quantum dots is an important step t...
Understanding and controlling charge transfer between different kinds of colloidal quantum dots (QDs...
Alloyed CdSeS nanocrystals allow tuning between the CdSe and CdS band edges while remaining relative...
Optical spectroscopy on ensembles and single CdSe/ZnS semiconductor quantum dots (QDs) demonstrates ...
Semiconductor quantum dots (QDs) composed of multiple components are playing an important role in so...
Injection of photoelectrons from colloidal CdSe quantum dots (QDs) capped by thioglycolic acid into ...
In this work, we systematically study the spectroelectrochemical response of CdSe quantum dots (QDs)...
Single molecule studies on CdSe quantum dots functionalized with oligo-phenylene vinylene ligands (C...
Achieving control of the surface chemistry of colloidal quantum dots (CQDs) is essential to fully ex...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
With increased interest in semiconductor nanoparticles for use in quantum dot solar cells there come...
The development of more efficient photovoltaic devices is crucial in order to harness the abundant s...
The research work in this dissertation is focused on the study of the semiconductor nanoparticles (N...
The optical properties of colloidal semiconductor nanocrystals are largely influenced by the trappin...
Understanding the mechanisms for photodegradation of nanocrystal quantum dots is an important step t...
Understanding and controlling charge transfer between different kinds of colloidal quantum dots (QDs...
Alloyed CdSeS nanocrystals allow tuning between the CdSe and CdS band edges while remaining relative...
Optical spectroscopy on ensembles and single CdSe/ZnS semiconductor quantum dots (QDs) demonstrates ...
Semiconductor quantum dots (QDs) composed of multiple components are playing an important role in so...
Injection of photoelectrons from colloidal CdSe quantum dots (QDs) capped by thioglycolic acid into ...
In this work, we systematically study the spectroelectrochemical response of CdSe quantum dots (QDs)...
Single molecule studies on CdSe quantum dots functionalized with oligo-phenylene vinylene ligands (C...
Achieving control of the surface chemistry of colloidal quantum dots (CQDs) is essential to fully ex...
Semiconductor quantum dots are inorganic nanoparticles which, because of their unique size-dependent...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...