Journal of Electromagnetic Analysis and Applications

Journal of Electromagnetic Analysis and Applications

ISSN Print: 1942-0730
ISSN Online: 1942-0749
www.scirp.org/journal/jemaa
E-mail: jemaa@scirp.org
"Synthesis, Permeability and Microstructure of the Optimal Nickel-Zinc Ferrites by Sol-Gel Route"
written by S. ZAHI,
published by Journal of Electromagnetic Analysis and Applications, Vol.2 No.1, 2010
has been cited by the following article(s):
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[2] Effect of Mn substitution on structural and magnetic properties of cobalt ferrite
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[3] The structural, magnetic and optical performances of Ni0. 2Zn0. 2Co0. 6Fe2O4 ferrites synthesized by sol-gel route
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[4] Influence of Y3+, Yb3+, Gd3+ cations on the structural and electromagnetic properties of CuFe2O4 nanoferrites prepared via one step sol-gel method
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[5] Synthesis of Cobalt-Doped Bi 12 NiO 19: Structural, Morphological, Dielectric and Magnetic Properties
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[6] Influence of Zn Doping on Ni-Based Nanoferrites;(Ni1− x ZnxFe2O4)
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[7] Influence of Zn+ 2 Doping on Ni-Based Nanoferrites;(Ni1− x ZnxFe2O4)
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[8] The effect of a trimetallic nanocomposite in the solar absorber layer of organic solar cells
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[9] Structural and complex impedance properties of Zn2+ substituted nickel ferrite prepared via low-temperature citrate gel auto-combustion method
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[10] Structural and dielectric properties of copper-based spinel ferrites
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[11] Co-dopant affect on the structural, electrical and magnetic properties of zirconium and copper co-substituted Ni0. 75Zn0. 25Fe2O4 spinel ferrites synthesized by sol …
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[12] Sol-gel synthesis, characterization, and catalytic properties of Ni, Cd, Co, and Fe oxides recycled from spent Ni-Cd batteries using citric acid as a leaching agent
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[13] Magnetna i električna svojstva keramičkih kompozitnih materijala na bazi nikl-cinkferita i barijum-titanata dobijenih postupkom auto-sagorevanja
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[14] Comparative studies of the dielectric properties of (1− x) BiFeO 3-xNi 0.8 Zn 0.2 Fe 2 O 4 (x= 0.0, 0.2, 0.5, 0.8, 1.0) multiferroic nanocomposite with their single phase …
Physica B: Condensed Matter, 2017
[15] Influence of La3+ Substitution on Structure, Morphology and Magnetic Properties of Nanocrystalline Ni-Zn Ferrite
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[16] Comparative studies of the dielectric properties of (1− x) BiFeO3-xNi0. 8Zn0. 2Fe2O4 (x= 0.0, 0.2, 0.5, 0.8, 1.0) multiferroic nanocomposite with their single phase …
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[17] Preparation of Nano Crystalline Zinc–Ferrite as Material for Micro Waves Absorption by Sol-Gel Methods
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[18] Magnetna i električna svojstva keramičkih kompozitnih materijala na bazi nikl-cink-ferita i barijum-titanata dobijenih postupkom auto-sagorevanja
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[19] Preparation of Nano Crystalline Zinc–Ferrite as Material for Microwaves Absorption by Sol-Gel Methods
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[20] Incorporation of Cr3+ ions in tuning the magnetic and transport properties of nano zinc ferrite
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[21] Formação de Eletrodepósitos de Cádmio, Síntese e Aplicação em Fotocatálise de Óxido Nanoestruturado de Cádmio e Óxidos de Níquel, Cádmio, Cobalto e Ferro a …
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[22] Structural and magnetic studies on Mn-doped Ni–Zn ferrite nanoparticles
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[23] Synthesis and Structural Investigation of Nano-Sized Cadmium Ferrite
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[24] Dielectric Response of Nix Zn1-x Al Fe O4 Nanoferrites
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[25] Influence of nickel addition on structural and magnetic properties of aluminium substituted Ni-Zn ferrite nanoparticles
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[26] Anti-corrosion behaviour of barrier, electrochemical and self-healing fillers in polymer coatings for carbon steel in a saline environment
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[27] Magnetically Retrievable Modified Nickel Ferrite Nanoparticles: Efficient Catalytic Reduction of Nitroarenes and Photo-oxidation of Hazardous Dyes
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[28] Low-Temperature Synthesis and Characterization of Spinel Ferrite Powders
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[29] Incorporation of Cr 3+ ions in tuning the magnetic and transport properties of nano zinc ferrite
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[30] Nano nickel ferrite (NiFe 2 O 4) as anti-corrosion pigment for API 5L X-80 steel: An electrochemical study in acidic and saline media
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[31] Effect of the Amine Concentration on Phase Evolution and Densification in Printed Films Using Cu (II) Complex Ink
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[32] Study of microstructure and augmentation of DC electrical resistivity due to Al 3+ substitution in Ni–Zn nano ferrite system synthesized via auto combustion
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[33] Effect of Nickel Ferrite on Bismuth Ferrite to generate Nanocomposite in relation to Structure, Characterization, Magnetic properties and Band Gap Evaluation
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[34] Multiferroic (NiZn) Fe 2 O 4–BaTiO 3 composites prepared from nanopowders by auto-combustion method
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[35] Study of microstructure and augmentation of DC electrical resistivity due to substitution in Ni–Zn nano ferrite system synthesized via auto combustion
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[36] Nano nickel ferrite (NiFe2O4) as anti-corrosion pigment for API 5L X-80 steel: An electrochemical study in acidic and saline media
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[37] Multiferroic (NiZn) Fe2O4–BaTiO3 composites prepared from nanopowders by auto-combustion method
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[38] Microwave Dielectric Properties of Ni0.2CuxZn0.8-xFe2O4 for Application in Antenna.
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[39] Microwave Dielectric Properties of Ni0.2CuXZn0.8-XFE2O4 for Application in Antenna
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[40] Study of Frequency and Microstructure Dependencies of Magnetic Losses of Ferrite Materials and Components
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[41] Structural and microwave characterization of Ni< sub> 0.2 Co< sub> x Zn< sub> 0.8? x Fe< sub> 2 O< sub> 4 for antenna applications
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[42] Synthesis, structure and electromagnetic properties of Mn–Zn ferrite by sol–gel combustion technique
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[43] Utilization of Composites and Nanocomposites Based on Natural Rubber and Ceramic Nanoparticles as Control Agents for Leishmania braziliensis
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[44] Microwave Dielectric Properties of Ni 0.2 Cu X Zn 0.8-X Fe 2 O 4 for Application in Antenna
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[45] Microwave Dielectric Properties of Ni 0.2 CuxZn0. 8-x Fe 2 O 4 for Application in Antenna.
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[46] Microwave Dielectric Properties of Ni< Sub> 0. 2 Cu< Sub> X Zn< Sub> 0. 8-X FE< Sub> 2 O< Sub> 4 for Application in Antenna
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[47] Structural and microwave characterization of Ni0. 2CoxZn0. 8− xFe2O4 for antenna applications
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[48] Ni0. 5Zn0. 5Fe2O4 as a potential corrosion inhibitor for API 5L X80 steel in acidic environment
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[49] Increase in initial permeability due to substitution of high spin cations in nanocrystalline Ni–Mg ferrites
Journal of Magnetism and Magnetic Materials, 2013
[50] Effect of preparation conditions on Nickel Zinc Ferrite nanoparticles: A comparison between sol–gel auto combustion and co-precipitation methods
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[51] Preparación y caracterización de nanocompuestos multifuncionales obtenidos con nanopartículas ferroeléctricas y paramagnéticas en películas de caucho natural
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[52] Universidade Estadu
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[53] Effect of Sintering Temperature on Structural and Magnetic Properties of Ni0.55Zn0.45Fe2O4 Ferrites
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[54] Structural, optical and dielectric studies of Ni x Zn 1? x Fe 2 O 4 prepared by auto combustion route
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[55] Optimization of thermal material in a flux pump system with high temperature superconductor
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[56] Effect of Sintering Temperature on Structural and Magnetic Properties of Ni0. 55Zn0. 45Fe2O4 Ferrites
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[57] Structural, optical and dielectric studies of NixZn1− xFe2O4 prepared by auto combustion route
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[58] Effect of Sintering Temperature on structural and magnetic properties of Ni 0.55 Zn 0.45 Fe 2 O 4 ferrites
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[59] Characterization of manganese ferrites obtained by mechanosynthesis
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[60] Характеристики феррита марганца, полученного механосинтезом
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[61] Formação de eletrodepósitos de cádmio, síntese e aplicação em fotocatálise de óxido nanoparticulado de cádmio e óxidos de níquel, cádmio, cobalto e ferro a …
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