Crystalline Structure, Surface Morphology and Optical Properties of Nanolamellar Composites Obtained by Intercalation of InSe with Cd
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UNTILA, Dumitru, CARAMAN, Iuliana, EVTODIEV, Igor, KANTSER, Valeriu, SPALATU, Nicolae, LEONTIE, Liviu, DMITROGLO, Liliana, LUCHIAN, Efimia. Crystalline Structure, Surface Morphology and Optical Properties of Nanolamellar Composites Obtained by Intercalation of InSe with Cd. In: Energy Procedia, Ed. 84, 11-15 mai 2015, Lille. Kidlington: Elsevier Ltd, 2015, Vol. 84, pp. 149-155. ISSN 18766102. DOI: https://doi.org/10.1016/j.egypro.2015.12.308
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Energy Procedia
Vol. 84, 2015
Conferința "E-MRS Spring Meeting 2015 Symposium C - Advanced inorganic materials and structures for photovoltaics"
84, Lille, Franța, 11-15 mai 2015

Crystalline Structure, Surface Morphology and Optical Properties of Nanolamellar Composites Obtained by Intercalation of InSe with Cd

DOI:https://doi.org/10.1016/j.egypro.2015.12.308

Pag. 149-155

Untila Dumitru1, Caraman Iuliana2, Evtodiev Igor1, Kantser Valeriu3, Spalatu Nicolae4, Leontie Liviu5, Dmitroglo Liliana1, Luchian Efimia1
 
1 Moldova State University,
2 "Vasile Alecsandri" University of Bacau,
3 Institute of the Electronic Engineering and Nanotechnologies "D. Ghitu" of the Academy of Sciences of Moldova,
4 Tallinn University of Technology,
5 Alexandru Ioan Cuza University of Iaşi
 
 
Disponibil în IBN: 9 mai 2023


Rezumat

A material composed of InSe and CdSe crystallites was obtained by heat treatment at 753K of InSe single crystalline plates in Cd vapour for 3÷24 hours. The average diameters of CdSe and InSe crystallites determined from diffraction lines analysis are respectively equal to 20 nm and 22 nm. The photoluminescence spectra at 300K and 80K of composite decompose well into two Gaussian curves, one is in good correlation with the photoluminescence of CdSe crystals and the other is shifted to higher energies than the width of the band gap of CdSe crystals.

Cuvinte-cheie
absorption, Cd, CdSe, crystalline structure, Crystallites, Heat treatment, InSe, photoluminescence