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Published in: Journal of Materials Science: Materials in Electronics 10/2013

01-10-2013

Synthesis of CuAl2O4 nanoparticles by mixed chelates thermolysis and homogeneous precipitation using solubility difference reactions; Taguchi optimization and photocatalytic application

Authors: Mohammad Edrisi, Sanaz Tajik, Meysam Soleymani

Published in: Journal of Materials Science: Materials in Electronics | Issue 10/2013

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Abstract

In the present study two novel methods are reported for preparation of nano crystalline copper aluminate (CuAl2O4).The first one is based on the pyrolysis of mixed Aluminum and Copper chelates of cupferron. The nanoparticles prepared by the first method were spherical with high specific surface area and smaller size in respect to the particles of second method. The nano crystals of CuAl2O4 at optimum conditions were spherical, with average particle size of 15.2 nm. In the second method the CuAl2O4 nano spindles with high purity were synthesized by a novel homogeneous solubility difference reactions using magnesium hydroxide as initial material. The Taguchi L8 statistical design was employed for procedure optimization of the chelates thermolysis method. The structure and morphological properties of products have been investigated using X-ray diffraction, Thermogravimetric Analysis, scanning electron microscopy, transmission electron microscopy, fourier transform infra-red, Brunauer-Emmett-Teller, Dynamic laser light scattering and elemental micro analysis. The photocatalytic activity of nanocrystalline CuAl2O4 obtained by first procedure was investigated for degradation of crystal violet (C25N3H30Cl) as a model pollutant and UV lamp as energy source. The results revealed that about 98 % degradation of crystal violet could be achieved at 120 min.

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Metadata
Title
Synthesis of CuAl2O4 nanoparticles by mixed chelates thermolysis and homogeneous precipitation using solubility difference reactions; Taguchi optimization and photocatalytic application
Authors
Mohammad Edrisi
Sanaz Tajik
Meysam Soleymani
Publication date
01-10-2013
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 10/2013
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-013-1338-4

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