2014
DOI: 10.1016/j.ceramint.2014.04.147
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Enhanced infrared radiation properties of CoFe2O4 by doping with Y3+ via sol–gel auto-combustion

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Cited by 36 publications
(12 citation statements)
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“…The noteworthy point is the fact that the single-phase formation and the extent of RE-ion content for complete solubility into the spinel ferrite lattice depends on the ionic size and chemistry of the ion under question. While x = 0.15 is the limit for Er + ions into CFO as determined in this work for materials synthesized by the sol–gel autocombustion method, Y 3+ ions can readily adopt to the structure and solubility up to x = 0.20 . Formation of secondary phases was reported only for x = 0.25 .…”
Section: Resultsmentioning
confidence: 68%
“…The noteworthy point is the fact that the single-phase formation and the extent of RE-ion content for complete solubility into the spinel ferrite lattice depends on the ionic size and chemistry of the ion under question. While x = 0.15 is the limit for Er + ions into CFO as determined in this work for materials synthesized by the sol–gel autocombustion method, Y 3+ ions can readily adopt to the structure and solubility up to x = 0.20 . Formation of secondary phases was reported only for x = 0.25 .…”
Section: Resultsmentioning
confidence: 68%
“…Studies confirmed that doping influences the structural [17], optical [18], electrical [17, 19], infrared radiation properties [20, 21], and magnetic properties [22, 23]. …”
Section: Introductionmentioning
confidence: 99%
“…For instance, the effect of addition of different surfactants such as agarose, starch, polystyrene, polyvinyl alcohol (PVA),, malic acid, hexamethylenetetramine (HMT), oxalyl dihydrazide (ODH), thiourea, ethylene glycol, citric acid, urea, glucose, and glycine has been investigated in order to optimize its physical and chemical properties. Moreover, the numerous studies have been done to modify morphology, size, and magnetic properties of CFO by doping the alloying elements such as V, Ni, Mn, Ti–Al, Ce, Zn, Gd, In, and rare earth elements . On the other hand, the most common methods which are used for the synthesis of CoFe 2 O 4 nanoparticles are co‐precipitation, solvothermal, hydrothermal, micro‐emulsion, and sol‐gel methods .…”
Section: Introductionmentioning
confidence: 99%