World Journal of Nano Science and Engineering

World Journal of Nano Science and Engineering

ISSN Print: 2161-4954
ISSN Online: 2161-4962
www.scirp.org/journal/wjnse
E-mail: wjnse@scirp.org
"Fe3O4 and Fe Nanoparticles by Chemical Reduction of Fe(acac)3 by Ascorbic Acid: Role of Water"
written by Ajinkya G. Nene, Makoto Takahashi, Prakash R. Somani,
published by World Journal of Nano Science and Engineering, Vol.6 No.1, 2016
has been cited by the following article(s):
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[2] Comparative study of the efficiency of conventional and green-prepared iron nanoparticles for catalytic ozonation
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[3] Utilizing Fruit Waste-Mediated Nanoparticles for Sustainable Food Packaging Materials to Combat Food Loss and Waste
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[5] Tailored synthesis of NdMnxFe1-xO3 perovskite nanoparticles with oxygen-vacancy defects for lithium-ion battery anodes
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[6] Direct Polyphenol Attachment on the Surfaces of Magnetite Nanoparticles, Using Vitis vinifera, Vaccinium corymbosum, or Punica granatum
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[7] Fine-tuning magnetic and hyperthermia properties of magnetite (Fe3O4) nanoparticles by using ammonia as a reducing agent
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[8] Facile Synthesis of Citric Acid Functionalized Fe3O4@Activated Carbon Magnetic Nanocomposite for Efficient Adsorption of Brilliant Green Dye from Wastewater
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[9] Simultaneous Determination of 1-Naphthol and 2-Naphthol in Waters by Electrochemical Sensor Based on Magnetite Porous Reduced Graphene Oxide/Carbon …
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[10] Fabrication of magnetic nanosystems for antimicrobial coatings
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[11] Diversity of iron oxides: mechanisms of formation, physical properties and applications
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[12] Novel synthesis of multi-layered rGO/Fe3O4 nanocomposite in a single step and its efficient electrochemical sensing of vitamin C
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[13] Magnetically separable and efficient platinum catalyst: Amino ligand enhanced loading and Fe2+ facilitated Pt0 formation
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[14] A short review on the preparation and use of iron nanomaterials for the treatment of pollutants in water and soil
Emergent Materials, 2022
[15] Formation Mechanisms of Co-existence of α-Fe and Iron Oxides Nanoparticles Decorated on Carbon Nanofibers by a Simple Liquid Phase Adsorption-Thermal …
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[16] Magnetic zeolite for Cs and Sr to clean up radioactively contaminated water from the Fukushima Daiichi Nuclear Power Plant
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[17] Ternary Ti–Mo–Fe Nanotubes as Efficient Photoanodes for Solar-Assisted Water Splitting
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[18] Inkjet printed patterns of polyamidoamine dendrimer functionalized magnetic nanostructures for future biosensing device application
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[19] Influence of Copper Precursor on the Catalytic Transformation of Oleylamine during Cu Nanoparticles Synthesis
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[20] Wavelength switchable Q-switched fiber laser based on Fe3O4 nanoparticles
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[21] Απομάκρυνση μείγματος οργανικών ρύπων από υδατικά δείγματα με τη χρήση μαγνητικών διμεταλλικών υλικών σιδήρου-χαλκού
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[22] A synthesis of polyethylene glycol (PEG)-coated magnetite Fe3O4 nanoparticles and their characteristics for enhancement of biosensor
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[23] A review of synthesis roots of iron nanoparticles
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[24] Magnetic Iron Oxide Nanoparticle (IONP) Synthesis to Applications: Present and Future
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[25] Synthesis and Photocatalytic Activity of Cu2O Microspheres upon Methyl Orange Degradation
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[26] Synthesis and Photocatalytic Activity of Cu 2 O Microspheres upon Methyl Orange Degradation
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[27] One-pot co-precipitation synthesis of Fe3O4 nanoparticles embedded in 3D carbonaceous matrix as anode for lithium ion batteries
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[28] Effect of experimental parameters on the synthesis of Fe3O4 nanoparticles by ascorbic acid mediated reduction of Fe(acac)3
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[29] Cинтез гибридных материалов на основе многостенных углеродных нанотрубок, декорированных нанопокрытиями WC1− x различной морфологии
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[30] Carbon-Supported Transition Metal Nanoparticles for Catalytic and Electromagnetic Applications
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[31] Synthesis of Hybrid Materials Based on Iron Nanoparticle-Decorated Multiwalled Carbon Nanotubes.
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[32] Oleic Acid Surface Modification in the Preparation of Magnetic Nanoparticles by a Chemically Induced Transition
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[33] Oxidative degradation of the antibiotic oxytetracycline by Cu@Fe3O4 core-shell nanoparticles
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[34] Synthesis of Hybrid Materials Based on Iron Nanoparticle-Decorated Multiwalled Carbon Nanotubes
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[35] СИНТЕЗ ГИБРИДНЫХ МАТЕРИАЛОВ НА ОСНОВЕ МНОГОСТЕННЫХ УГЛЕРОДНЫХ НАНОТРУБОК, ДЕКОРИРОВАННЫХ НАНОЧАСТИЦАМИ ЖЕЛЕЗА
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[36] Çok fonksiyonlu süperparamanyetik grafen oksit nano-malzemelerin hazırlanması ve kanser tedavisinde kullanılabilirliğinin araştırılması
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[37] Characteristics of Fe3O4, α -Fe2O3, and γ-Fe2O3 Nanoparticles as Suitable Candidates in the Field of Nanomedicine
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[38] Mechanistic Investigations of the Synthesis of Size‐Tunable Ni Nanoparticles by Reduction of Simple NiII Diamide Precursors
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[39] DESIGNED STRUCTURE AND MAGNETIC CHARACTERISTIC STUDIES OF MAGNETIC IRON OXIDE (Fe3O4) NANOPARTICLES COATED BY POLYVINYL ALCOHOL AND POLYVINYL ALCOHOL-LINKED WITH GLUTARALDEHYDE
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[40] Characteristics of Fe3O4, α-Fe2O3, and γ-Fe2O3 Nanoparticles as Suitable Candidates in the Field of Nanomedicine
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[41] Magnetic Responses of Divinylbenzene-Fe3O4 Composite Film Deposited by Free Radical Polymerization Method
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[42] Designed structure and magnetic characteristic studies of magnetic iron oxide (Fe 3 O 4) nanoparticles coated by polyvinyl alcohol and polyvinyl alcohol-linked …
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[43] Metal-Organic Hybrid Nanocomposites For Energy Harvesting Applications
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[44] Food Bioscience
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