Optics and Photonics Journal

Optics and Photonics Journal

ISSN Print: 2160-8881
ISSN Online: 2160-889X
www.scirp.org/journal/opj
E-mail: opj@scirp.org
"Fabrication and Investigation of the Magnetic Properties of Co and Co3O4 Nanoparticles"
written by Fardin Taghizadeh,
published by Optics and Photonics Journal, Vol.6 No.8B, 2016
has been cited by the following article(s):
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[1] Electrical, Magnetic, and Sensing Properties of Acetone in Co3–xNixO4-rGO Samples
ACS Applied …, 2024
[2] Synthesis and characterization study of spinel Co3O4 nanoparticles synthesized via the facial co-precipitation route for optoelectronic application
Dief, NMA Hadia… - Optical and Quantum …, 2024
[3] Green synthesized cobalt oxide nanoparticles with photocatalytic activity towards dye removal
Environmental …, 2023
[4] Optical bandgap tuning of cubic spinel Co3O4 by annealing temperature
Materialia, 2022
[5] Morphological, electronic, and magnetic properties of multicomponent cobalt oxide nanoparticles synthesized by high temperature arc plasma
, 2021
[6] Improvement of structural, optical and magnetic properties of cobalt oxide thin films by doping with iron
2021
[7] Ultrasonically sprayed cobalt oxide thin films: Enhancing of some physical properties by nickel doping
2021
[8] Síntesis y caracterización de nano y micropartículas de óxido de zinc: un estudio morfológico desde partículas densas hasta mesoporosas sin utilizar plantillas …
2021
[9] Spinel-Type Transition Metal Oxides as Heterogeneous Water Oxidation Catalysts
2020
[10] Novel mycosynthesis of cobalt oxide nanoparticles using Aspergillus brasiliensis ATCC 16404—optimization, characterization and antimicrobial activity
2019
[11] Electronic, magnetic and structural properties of Co3O4 (100) surface: a DFT+ U study
Applied Surface Science, 2018
[12] Computational study of cobalt oxide: Nanoparticles, surfaces and thin films supported on metal oxide surfaces/Ala'Omar Hasan Zayed
2018
[13] Computational Study of Cobalt Oxide: Nanoparticles, Surfaces and Thin Films Supported on Metal Oxide Surfaces
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