Synthesis and physico-chemical studies of alloys of the As<sub>2</sub>Se<sub>3</sub>-CuCr<sub>2</sub>Te<sub>4</sub> system and properties of the obtained composite materials


Aliyev I. I., Ismailova S. S., Rzayev R. M., Mamedov A. N., Gashimov K. M., Karimova N.

MODERN PHYSICS LETTERS B, vol.36, no.28N29, 2022 (SCI-Expanded) identifier identifier

  • Nəşrin Növü: Article / Article
  • Cild: 36 Say: 28N29
  • Nəşr tarixi: 2022
  • Doi nömrəsi: 10.1142/s021798492250155x
  • jurnalın adı: MODERN PHYSICS LETTERS B
  • Jurnalın baxıldığı indekslər: Science Citation Index Expanded (SCI-EXPANDED), Scopus, Academic Search Premier, Chemical Abstracts Core, INSPEC, zbMATH
  • Adres: Bəli

Qısa məlumat

Alloys of the As2Se3-CuCr2Te4 system were synthesized in a wide range of concentrations, and their physico-chemical properties were studied by differential thermal analysis (DTA), X-ray diffraction (XRD), microstructural (MSA) analysis, as well as by determining the microhardness and density, and its T-x phase diagram was constructed. It has been established that the phase diagram of the As2Se3-CuCr2Te4 system is quasi-binary of the eutectic type. The system has small single-phase fields based on the original components. In the As2Se3-CuCr2Te4 system, the area of the solid solution based on the As2Se3 compound at room-temperature is 2 mol%, and the area of the solid solution based on the CuCr2Te4 compound is 6 mol%. Joint crystallization of As2Se3 and CuCr2Te4 ends at the double eutectic point with a composition of 15 mol% CuCr2Te4. With slow cooling in the As2Se3-CuCr2Te4 system based on As2Se3, the glass formation region reaches 10 mol% CuCr2Te4. The magnetic properties of the obtained solid solutions (CuCr(2)Te4)1-x(As(2)Se3)(x) (x-0.03; 0.05) were studied.