Published 2013 | Version v1
Journal article

Thermal stability and microstructure characterization of MgAl2O4 nanoparticles synthesized by reverse microemulsion method

  • 1. Department of Electronic Science and Technology, HuaZhong University of Science and Technology – HUST, Wuhan (China)
  • 2. Department of Materials Science and Engineering, Wuhan Institute of Technology – WIT, Wuhan (China)
  • 3. Key Lab of Functional Materials for Electronic Information(B) MOE, HuaZhong University of Science and Technology – HUST, Wuhan (China)

Description

Magnesium aluminate (MgAl2O4) spinel nanoparticles were synthesized by reverse microemulsion process in cyclohexane by using two kinds of surfactants, n-amyl alcohol as cosurfactant and mixture of aluminic/magnesic salt aqueous solution as basic reagents. The effects of surfactant types and titration methods on the morphologies and sizes of the MgAl2O4 nanoparticles were characterized by TEM, TGA-DTA, XRD, HR-TEM and FT-IR. TEM images show that the particles prepared by forward titration method with SPAN-80/Triton X-100 compound emulsifier have uniform spherical shape and good monodispersity with an average size of 9.5 nm. However, the average size of the particles prepared by reverse-titration method was about 10 nm and some particles have irregular plate like appearance. The products prepared with NP-40 surfactant and forward-titration method were agglomerated with an average size of 13 nm. TGA and XRD results show that the reverse microemulsion method has dramatically lowered the calcination temperature of MgAl2O4 with a degree of 700°C, and the precursor can transform to single spinel phase at 900 °C. (author)

Availability note (English)

Available from http://www.scielo.br/pdf/mr/v16n4/aop_1387-12.pdf

Additional details

Publishing Information

Journal Title
Materials Research (Sao Carlos, SP)
Journal Volume
16
Journal Issue
4
Journal Page Range
p. 844-849
ISSN
1516-1439