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Energy structure and absorption spectra of colloidal CdS nanocrystals in gelatin matrix
Affiliation:1. Department of Physics, Faculty of Science, Beirut Arab University, P.O.Box 11 5020 Riad El Solh 11072809 Beirut, Lebanon;2. Department of Physics, Faculty of Science, Alexandria University, Moharram Bek, Alexandria 21511, Egypt
Abstract:
We investigate the energy structure of colloidal CdS nanocrystals by measuring the UV–vis absorption spectra. Nanocrystals were synthesized by sol–gel method in a gelatin matrix in the size range from 2.5 to 3.9 (±0.2) nm. In order to interpret the UV–vis absorption spectra we calculate the energy spectrum of electron quasi-stationary states using the model of open nanocrystal as well as the hole stationary spectrum in a two-band approach. It is shown that the main contribution to the absorption spectrum is made by interband transitions 1S3/2→1Se and 1P3/2→1Pe, and its shape is determined by the size distribution of nanoparticles. For this system the estimated values of the effective masses of the heavy hole and light hole are 1.44m0 and 0.28m0, respectively.
Keywords:Nanocrystal  Energy spectrum  UV–vis absorption spectra  Gelatin
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