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Synthesis Of The FeIn2Se4 Compounds

Yıl 2017, Cilt: 4 Sayı: 1, 93 - 102, 13.07.2017
https://doi.org/10.18596/jotcsa.315546

Öz

  •     Indium is transferred by the tartaric acid in the
    strong complex in aqueous medium. Then the selenizing solution (solution of
    selenium on sodium tetraborate) is added. The voluminous sediment of yellow
    color turns out. Composition of the determined by differential thermal analysis
    and electron microprobe analysis. The qualitative analysis of this sediment has
    shown the presence of indium and selenium. In various experiments are produced
    sediments of different colors when medium pH changes. The set of experiments
    has been carried out to specify color change and hydrogen ions concentration
    impact. This
     FeIn2Secompound for
    production FeSO4x7H2
    is mixed with In2Se4 in
    the molar ratios
    2:3 (FeIn2Se4)  with the presence of acetate acid
    (pH=7-3), at
    293-353 K in
    aqueous medium. In organic medium test within 10 hours
    at
    413
    – 443 K
    to
    temperature remains in the furnace. Phase analysis of 
    FeIn2Se is studied
    using the X-ray powder diffraction (XRD)
    and
    chemical analysis.
    The compound FeIn2Se crystallized in
    hexagonal singoniya a=4.012 Å, c=39.21 
    Å. Morphological investigations have been performed using
    scanning electron microscopy (SEM). Optical absorption is measured using a
    spectrophotometer, IK spektr analysis on the basis of the spectrum,
    which
    has been read from the dispersed solution of
     FeIn2Seis
    calculated.
    Differential thermal
    analysis (DTA) of
    FeIn2Secompound
    is observed one endothermic effect. In the system Tg=1158
     K aqueous
    medium, 
    Tg=1123 organic
    medium endothermic effect corresponds to the
    melting point of the combination.
    In this iron indium selenide
    efficiency is 92.2 %. 

Kaynakça

  • [1] Chaiken A. [and others]. Structural and electronic properties of amorphous and polycrystalline films, Journal of Applied Physics, 94 (2003), http://dx.doi.org/10.1063/1.1592631
  • [2] Tulenin S.S. [and others]. Deposition conditions, the composition and structure of the chemically deposited films of , Journal of Inorganic Chemistry, 61(2016), 1–8.
  • [3] Cedeño C. [and others]. The crystal structure of , a -related polytype, Journal of Physics and Chemistry of Solids, 66 (2005), 2049–2051.
  • [4] Bodnar I.V. [and others]. Growth, structure, and thermal expansion anisotropy of single crystals, Inorganic Materials, 46 (2010), 604–608.
  • [5] Niftiyev N.N. [and others]. The dielectric properties of layered monocrystals , Journal of Physics, 8 (2007), 3–5.
  • [6] Cedeno C. [and others]. The crystal structure of , a -related polytype, Journal of Physics and Chemistry of Solids. 66 (2005), 2049–2051
  • [7] Reil S., Haeuseler H. Journal of Alloys and Compounds 270, 83 (1998).
  • [8] Paulinkavets S.A. Growth and properties of the and single crystal chalcogenides for wideband photoconverters, Аvtoreferat. (2012).
  • [9] Scheler V.R., Powell A.R. Analysis of minerals and ores of rare elements, State scientific and technical publishing house, Moscow, 447, (1962).
  • [10] A.A. Nemodruk. Analytical Chemistry of the Elements, Nauka, Moscow, 244, (1976).
Yıl 2017, Cilt: 4 Sayı: 1, 93 - 102, 13.07.2017
https://doi.org/10.18596/jotcsa.315546

Öz

Kaynakça

  • [1] Chaiken A. [and others]. Structural and electronic properties of amorphous and polycrystalline films, Journal of Applied Physics, 94 (2003), http://dx.doi.org/10.1063/1.1592631
  • [2] Tulenin S.S. [and others]. Deposition conditions, the composition and structure of the chemically deposited films of , Journal of Inorganic Chemistry, 61(2016), 1–8.
  • [3] Cedeño C. [and others]. The crystal structure of , a -related polytype, Journal of Physics and Chemistry of Solids, 66 (2005), 2049–2051.
  • [4] Bodnar I.V. [and others]. Growth, structure, and thermal expansion anisotropy of single crystals, Inorganic Materials, 46 (2010), 604–608.
  • [5] Niftiyev N.N. [and others]. The dielectric properties of layered monocrystals , Journal of Physics, 8 (2007), 3–5.
  • [6] Cedeno C. [and others]. The crystal structure of , a -related polytype, Journal of Physics and Chemistry of Solids. 66 (2005), 2049–2051
  • [7] Reil S., Haeuseler H. Journal of Alloys and Compounds 270, 83 (1998).
  • [8] Paulinkavets S.A. Growth and properties of the and single crystal chalcogenides for wideband photoconverters, Аvtoreferat. (2012).
  • [9] Scheler V.R., Powell A.R. Analysis of minerals and ores of rare elements, State scientific and technical publishing house, Moscow, 447, (1962).
  • [10] A.A. Nemodruk. Analytical Chemistry of the Elements, Nauka, Moscow, 244, (1976).
Toplam 10 adet kaynakça vardır.

Ayrıntılar

Konular Kimya Mühendisliği
Bölüm Makaleler
Yazarlar

Aliye Rzayeva Bu kişi benim

Yayımlanma Tarihi 13 Temmuz 2017
Gönderilme Tarihi 23 Mayıs 2017
Kabul Tarihi 22 Aralık 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 4 Sayı: 1

Kaynak Göster

Vancouver Rzayeva A. Synthesis Of The FeIn2Se4 Compounds. JOTCSA. 2017;4(1):93-102.