STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE
A new spinel solid solution system of Ni1-xFexAl2O4 (0.0 ≤ x ≤ 0.5) was synthesized through sol-gel method. The effect of Fe doping on the nickel aluminate prepared was investigated. The synthesized powders were characterized by means of X-ray diffraction, thermogravimetric and differential therma...
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doaj-408bf5c804d844159b62d4b77cd7a0792020-11-24T23:14:18ZengEl Oued UniversityJournal of Fundamental and Applied Sciences2588-19141112-98672018-12-0111110.4314/jfas.v11i1.15117STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDEW. Tibermacine0M. Omari1University Mohamed Khider of Biskra, Laboratory of Molecular Chemistry and Environment, Faculty of Exact and Natural Sciences, 07000, AlgeriaUniversity Mohamed Khider of Biskra, Laboratory of Molecular Chemistry and Environment, Faculty of Exact and Natural Sciences, 07000, Algeria A new spinel solid solution system of Ni1-xFexAl2O4 (0.0 ≤ x ≤ 0.5) was synthesized through sol-gel method. The effect of Fe doping on the nickel aluminate prepared was investigated. The synthesized powders were characterized by means of X-ray diffraction, thermogravimetric and differential thermal analysis, fourier transform infrared spectroscopy, scanning electron microscopy and electrochemical measurements. From the preceding analysis, it can be shown that compounds show a single spinel phase in the temperature range 650-1000°C and the solubility of iron in the NiAl2O4 structure was limited to samples with the iron content x < 0.6. The electrochemical measurements indicate that the catalytic activity is strongly influenced by iron doping. The highest electrode performance is achieved with Ni0.7Fe0.3Al2O4 (i=86.84 mA/cm2) which is ~ 27 times greater than that of NiAl2O4 ( i=3.22 mA/cm2) at E= +0.8V. After one hundred cycles, the stability of the doped electrode with 30% of iron is much better than the undoped electrode. http://www.jfas.info/index.php/JFAS/article/view/117Spinel oxide, Sol-gel, Powder diffraction, Thermal analysis, Oxygen evolution reaction. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
W. Tibermacine M. Omari |
spellingShingle |
W. Tibermacine M. Omari STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE Journal of Fundamental and Applied Sciences Spinel oxide, Sol-gel, Powder diffraction, Thermal analysis, Oxygen evolution reaction. |
author_facet |
W. Tibermacine M. Omari |
author_sort |
W. Tibermacine |
title |
STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE |
title_short |
STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE |
title_full |
STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE |
title_fullStr |
STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE |
title_full_unstemmed |
STRUCTURAL AND ELECTROCHEMICAL PROPERTIES OF Fe-DOPED NiAl2O4 OXIDE |
title_sort |
structural and electrochemical properties of fe-doped nial2o4 oxide |
publisher |
El Oued University |
series |
Journal of Fundamental and Applied Sciences |
issn |
2588-1914 1112-9867 |
publishDate |
2018-12-01 |
description |
A new spinel solid solution system of Ni1-xFexAl2O4 (0.0 ≤ x ≤ 0.5) was synthesized through sol-gel method. The effect of Fe doping on the nickel aluminate prepared was investigated. The synthesized powders were characterized by means of X-ray diffraction, thermogravimetric and differential thermal analysis, fourier transform infrared spectroscopy, scanning electron microscopy and electrochemical measurements. From the preceding analysis, it can be shown that compounds show a single spinel phase in the temperature range 650-1000°C and the solubility of iron in the NiAl2O4 structure was limited to samples with the iron content x < 0.6. The electrochemical measurements indicate that the catalytic activity is strongly influenced by iron doping. The highest electrode performance is achieved with Ni0.7Fe0.3Al2O4 (i=86.84 mA/cm2) which is ~ 27 times greater than that of NiAl2O4 ( i=3.22 mA/cm2) at E= +0.8V. After one hundred cycles, the stability of the doped electrode with 30% of iron is much better than the undoped electrode.
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topic |
Spinel oxide, Sol-gel, Powder diffraction, Thermal analysis, Oxygen evolution reaction. |
url |
http://www.jfas.info/index.php/JFAS/article/view/117 |
work_keys_str_mv |
AT wtibermacine structuralandelectrochemicalpropertiesoffedopednial2o4oxide AT momari structuralandelectrochemicalpropertiesoffedopednial2o4oxide |
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1725595145653452800 |