PbSe/CdSe core/shell quantum dots (QDs) were prepared and investigated as thick films using temperature-dependent photoluminescence. In addition to increased photostability, the CdSe shell leads to a four-fold increase of the activation energy for nonradiative exciton decay for the core/shell QDs compared to that for the bare PbSe QDs. The onset for exponential decay of luminescence is ∼240 K in the core/shell samples. From further analysis of the temperature-dependent photoluminescence shift and emission line width, we find that the cation exchange reaction broadens the QD size distribution and increases the temperature-independent state broadening. However, the temperature-dependent contribution to the line shape of the core/shell QDs is ...
Lead-based (IV–VI) colloidal quantum dots (QDs) are of widespread scientific and technological inter...
Thermal quenching of quantum dot (QD) luminescence is important for application in luminescent devic...
Colloidal quantum dots (QDs) are highly attractive as the active material for optical amplifiers and...
We present a quantitative analysis of the absorption and luminescence of colloidal PbSe/CdSe core/sh...
Colloidal quantum dots (QDs) are a class of materials that have received significant interest due to...
We present a quantitative analysis of the absorption and luminescence of colloidal PbSe/CdSe core/sh...
The effect of PbS core size on the temperature-dependent photoluminescence (PL) of PbS/CdS quantum d...
ABSTRACT: The effect of PbS core size on the temperature-dependent photoluminescence (PL) of PbS/CdS...
The work focuses on the optical investigation of temperature-dependent recombination processes in sm...
Temperature dependent photoluminescence (PL) spectroscopy in a range of 5 K to room temperature (RT,...
We demonstrate additive shelling of PbS core quantum dots by CdS using room-temperature colloidal at...
© 2016 American Chemical Society. We demonstrate additive shelling of PbS core quantum dots by CdS u...
Colloidal semiconductor quantum dots (QDs) are extraordinarily appealing for the development of chea...
Exploring the temperature-dependent photoluminescence (PL) properties of quantum dots (QDs) is not o...
We demonstrate additive shelling of PbS core quantum dots by CdS using room-temperature colloidal at...
Lead-based (IV–VI) colloidal quantum dots (QDs) are of widespread scientific and technological inter...
Thermal quenching of quantum dot (QD) luminescence is important for application in luminescent devic...
Colloidal quantum dots (QDs) are highly attractive as the active material for optical amplifiers and...
We present a quantitative analysis of the absorption and luminescence of colloidal PbSe/CdSe core/sh...
Colloidal quantum dots (QDs) are a class of materials that have received significant interest due to...
We present a quantitative analysis of the absorption and luminescence of colloidal PbSe/CdSe core/sh...
The effect of PbS core size on the temperature-dependent photoluminescence (PL) of PbS/CdS quantum d...
ABSTRACT: The effect of PbS core size on the temperature-dependent photoluminescence (PL) of PbS/CdS...
The work focuses on the optical investigation of temperature-dependent recombination processes in sm...
Temperature dependent photoluminescence (PL) spectroscopy in a range of 5 K to room temperature (RT,...
We demonstrate additive shelling of PbS core quantum dots by CdS using room-temperature colloidal at...
© 2016 American Chemical Society. We demonstrate additive shelling of PbS core quantum dots by CdS u...
Colloidal semiconductor quantum dots (QDs) are extraordinarily appealing for the development of chea...
Exploring the temperature-dependent photoluminescence (PL) properties of quantum dots (QDs) is not o...
We demonstrate additive shelling of PbS core quantum dots by CdS using room-temperature colloidal at...
Lead-based (IV–VI) colloidal quantum dots (QDs) are of widespread scientific and technological inter...
Thermal quenching of quantum dot (QD) luminescence is important for application in luminescent devic...
Colloidal quantum dots (QDs) are highly attractive as the active material for optical amplifiers and...