Analysis of the size distribution of nanocrystals is a critical requirement for the processing and optimization of their size-dependent properties. The common techniques used for the size analysis are transmission electron microscopy (TEM), X-ray diffraction (XRD) and photoluminescence spectroscopy (PL). These techniques, however, are not suitable for analyzing the nanocrystal size distribution in a fast, non-destructive and a reliable manner at the same time. Our aim in this work is to demonstrate that size distribution of semiconductor nanocrystals that are subject to size-dependent phonon confinement effects, can be quantitatively estimated in a non-destructive, fast and reliable manner using Raman spectroscopy. Moreover, mixed size dist...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
Abstract: This contribution reports on application of low-wavenumber Raman scattering on acoustical ...
A new analytical expression for the size-dependent bandgap of colloidal semiconductor nanocrystals i...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We demonstrate how to determine the size distribution of semiconductor nanocrystals in a quantitativ...
We demonstrate how to determine the size distribution of semiconductor nanocrystals in a quantitativ...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
Abstract: This contribution reports on application of low-wavenumber Raman scattering on acoustical ...
A new analytical expression for the size-dependent bandgap of colloidal semiconductor nanocrystals i...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
Analysis of the size distribution of nanocrystals is a critical requirement for the processing and o...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We demonstrate how to determine the size distribution of semiconductor nanocrystals in a quantitativ...
We demonstrate how to determine the size distribution of semiconductor nanocrystals in a quantitativ...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
We report a rigorous analytical approach based on one-particle phonon confinement model to realize d...
Abstract: This contribution reports on application of low-wavenumber Raman scattering on acoustical ...
A new analytical expression for the size-dependent bandgap of colloidal semiconductor nanocrystals i...