CdSe nanowires show reversible emission intensity enhancements when subjected to electric field strengths ranging from 5 to 22 MV/m. Under alternating positive and negative biases, emission intensity modulation depths of 14 ± 7% are observed. Individual wires are studied by placing them in parallel plate capacitor-like structures and monitoring their emission intensities <i>via</i> single nanostructure microscopy. Observed emission sensitivities are rationalized by the field-induced modulation of carrier detrapping rates from NW defect sites responsible for nonradiative relaxation processes. The exclusion of these states from subsequent photophysics leads to observed photoluminescence quantum yield enhancements. We quantitatively explain th...
Includes bibliographical references.Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of ...
The assessment of the presence and the origin of an intrinsic internal electric field in novel collo...
Colloidal semiconductor nanowires are interesting materials with polarized optical feature for optoe...
CdSe nanowires show reversible emission intensity enhancements when subjected to electric field stre...
We present temperature and power dependent photoluminescence measurements on CdSe nanowires synthesi...
The local luminescence properties of individual CdSe nanowires composed of segments of zinc blende a...
Here, we demonstrate the synthesis of aligned CdS nanowires by a solvothermal process where the alig...
We studied photoluminescence (PL) properties of CdSe nanorods integrated in a thin film sandwiched b...
Photoluminescence (PL) properties of individual CdSe nanowires with diameters beyond the quantum con...
External electric field effects on spectra and decay of photoluminescence (PL) as well as on absorpt...
We report on the electric-field-dependent photoconductivity (PC) near the band-edge region of indivi...
Journal ArticleSpherical CdSe nanocrystals capped by a CdS rod-like shell exhibit interesting spectr...
In semiconductor nanocrystals, excited electrons relax through multiple radiative and nonradiative p...
Cadmium sulfide nanomaterials hold promise in the application for various photonic devices such as g...
Cadmium sulfide nanomaterials hold promise in the application for various photonic devices such as g...
Includes bibliographical references.Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of ...
The assessment of the presence and the origin of an intrinsic internal electric field in novel collo...
Colloidal semiconductor nanowires are interesting materials with polarized optical feature for optoe...
CdSe nanowires show reversible emission intensity enhancements when subjected to electric field stre...
We present temperature and power dependent photoluminescence measurements on CdSe nanowires synthesi...
The local luminescence properties of individual CdSe nanowires composed of segments of zinc blende a...
Here, we demonstrate the synthesis of aligned CdS nanowires by a solvothermal process where the alig...
We studied photoluminescence (PL) properties of CdSe nanorods integrated in a thin film sandwiched b...
Photoluminescence (PL) properties of individual CdSe nanowires with diameters beyond the quantum con...
External electric field effects on spectra and decay of photoluminescence (PL) as well as on absorpt...
We report on the electric-field-dependent photoconductivity (PC) near the band-edge region of indivi...
Journal ArticleSpherical CdSe nanocrystals capped by a CdS rod-like shell exhibit interesting spectr...
In semiconductor nanocrystals, excited electrons relax through multiple radiative and nonradiative p...
Cadmium sulfide nanomaterials hold promise in the application for various photonic devices such as g...
Cadmium sulfide nanomaterials hold promise in the application for various photonic devices such as g...
Includes bibliographical references.Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of ...
The assessment of the presence and the origin of an intrinsic internal electric field in novel collo...
Colloidal semiconductor nanowires are interesting materials with polarized optical feature for optoe...