Published January 2015 | Version v1
Journal article

Structure and optical properties of GaSe-CdSe composites driven by Cd intercalation in GaSe lamellar crystals

  • 1. Vasile Alecsandri Univ. of Bacau, 157 Calea Marasesti, RO 600115, Bacau (Romania)
  • 2. D. Gitsu Institute of the Electronic Engineering and Nanotechnologies, Academy of Sciences of Moldova, Chisinau (Moldova, Republic of)
  • 3. Scientific Research Lab. for Photonics and Physical Metrology, Moldova State Univ., Chisinau (Moldova, Republic of)
  • 4. Faculty of Physics, Alexandru Ioan Cuza Univ. of Iasi, Bul. Carol I, no. 11, 700506, Iasi (Romania)
  • 5. JINR, Joliot-Curie 6, Dubna, Moscow region, 141980, Dubna (Russian Federation)

Description

A new composite material composed of GaSe and CdSe has been obtained by treatment of GaSe single-crystal lamellas in Cd vapors at temperatures of 773-853 K and intercalation of Cd interlayers. The structure and optical properties of the GaSe-CdSe composite material have been studied. The content of CdSe crystallites was found to grow with increasing treatment temperature or with increasing duration of treatment at a constant temperature. Analysis of XRD, PL, XPS, AFM, and Raman patterns has shown that the heterogeneous composite composed of micro and nanocrystallites of CdSe in GaSe can be obtained by Cd intercalation in a temperature range of 753-853 K. On the basis of Raman spectrum, the vibrational modes of the composite have been identified. The PL of these materials contains emission bands of free and bound excitons, donor-acceptor bands, and bands of recombination via impurity levels. The PL emission spectra measured at a temperature of 78 and 300 K for the composites result from the overlapping of the emission bands of the components of GaSe doped with Cd and the CdSe crystallites. (authors)

Availability note (English)

Available online at http://sfm.asm.md/moldphys/moldphys2015v14n12.pdf

Additional details

Publishing Information

Journal Title
Moldavian Journal of the Physical Sciences
Journal Volume
14
Journal Issue
1-2
Journal Page Range
p. 51-60
ISSN
1810-648X

Optional Information

Notes
15 refs., 2 tabs., 7 figs.