Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Preparation of Copper (Cu) and Copper Oxide (Cu2O) Nanoparticles under Supercritical Conditions"
written by M. Asharf Shah, M. S. Al-Ghamdi,
published by Materials Sciences and Applications, Vol.2 No.8, 2011
has been cited by the following article(s):
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[4] Investigation of Structural Characteristics of Single-Phase Cuprous Oxide (Cu2o) Powder Prepared By Chemical Method
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[6] Magnetic State of the Nickel Oxide Nanoparticles Formed in Low-Pressure Arc Discharge Plasma
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[9] Engineering and Economic Perspective in The Production of Cu Nano
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[10] Tesis que presenta
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[11] Особенности магнитного состояния наночастиц оксида никеля, полученного в плазме дугового разряда низкого давления
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[12] Ions-free electrochemically synthetized in aqueous media flake-like CuO nanostructures as SERS reproducible substrates for the detection of neurotransmitters
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[13] Heterostructured 2D ZnO hybrid nanocomposites sensitized with cubic Cu2O nanoparticles for sunlight photocatalysis
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[14] Green synthesis of nanoparticles of copper and its oxides in a nanoporous carbon matrix
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[15] Experimental and numerical investigations on performance of evacuated tube solar collectors with parabolic concentrator, applying synthesized Cu2O/distilled water …
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[16] Green Modifikasi Nanopartikel Au Terhadap Permukaan Bentonit Terpilar Cu Sebagai Degradasi Zat Warna Remazol Brilliant Blue R (RBBR)
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[17] Performance improvement of a single slope solar still by employing thermoelectric cooling channel and copper oxide nanofluid: An experimental study
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[18] Hydrothermal-assisted synthesis of the multi-element-doped TiO2 micro/nanostructures and their photocatalytic reactivity for the degradation of tetracycline …
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[19] Interparticle double charge transfer mechanism of heterojunction α-Fe2O3/Cu2O mixed oxide catalysts and its visible light photocatalytic activity
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[20] Fabrication of cost-effective non-noble metal supported on conducting polymer composite such as copper/polypyrrole graphene oxide (Cu2O/PPy–GO) as an anode …
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[21] Production of Cu2O Powder Using Electrodeposition Method
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[22] Biological application of water-based electrochemically synthesized CuO leaf-like arrays: SERS response modulated by the positional isomerism and interface type
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[23] Antibacterial Activity of Cu Nanoparticles against E. coli, Staphylococcus aureus and Pseudomonas aeruginosa
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[24] Interparticle double charge transfer mechanism of heterojunction α-Fe 2 O 3/Cu 2 O mixed oxide catalysts and its visible light photocatalytic activity
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[25] Fabrication of cost-effective non-noble metal supported on conducting polymer composite such as copper/polypyrrole graphene oxide (Cu 2 O/PPy–GO) as an anode …
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[26] Peculiarities of Magnetic Behavior of CuO Nanoparticles Produced by Plasma-Arc Synthesis in a Wide Temperature Range
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[27] Facile Synthesis of Sulfobetaine-Stabilized Cu2O Nanoparticles and Their Biomedical Potential
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[28] Copper Oxide of Plasma-Chemical Synthesis for Doping Superconducting Materials
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[29] Biological application of water-based electrochemically synthesized CuO leaf-like arrays: SERS response modulated by the positional isomerism and …
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[30] Morphological and Optical Characteristics of Chitosan (1− x): Cuox (4≤ x≤ 12) Based Polymer Nano-Composites: Optical Dielectric Loss as an Alternative Method for …
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[31] Interparticle double charge transfer mechanism of heterojunction-Fe2O3/Cu2O mixed oxide catalysts and its visible light photocatalytic activity
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[32] Green synthesis of copper bionanoparticles to control the bacterial leaf blight disease of rice.
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[33] Electrochemical Properties of Si Film Electrodes Grown on Current Collectors with Reduced Cu2O Nanostructures for Li Ion Battery
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[34] Effect of radiation on corrosion of copper tubes used in heat exchangers and heat transfer tubes
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[35] Particularities of the Magnetic State of CuO Nanoparticles Produced by Low-Pressure Plasma Arc Discharge
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[36] Copper nanoparticles: Synthesis methods and its light harvesting performance
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[37] Cu and Cu-Based Nanoparticles: Synthesis and Applications in Catalysis
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[38] Si film electrodes with surface-modified Cu current collectors for micro Li batteries
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[39] Green synthesis of copper bionanoparticles to control the bacterial leaf blight disease of rice
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[40] Using Response Surface Methodology in Synthesis of Ultrafine Copper Nanoparticles by Electrolysis
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[41] A Brief Review on Synthesis and Characterization of Copper Oxide Nanoparticles and its Applications
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[42] Synthesis and Structural Studies of Nanowires Composite Materials from Rice Husk Ash by Metallothermic Processes
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[43] Plasma-chemical synthesis of copper oxide nanoparticles in a low-pressure arc discharge
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[44] Si film electrodes containing surface-modified Cu current collectors prepared by a low temperature oxidation-reduction process
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[45] Synthesis and characterization of Eichhornia-mediated copper oxide nanoparticles and assessing their antifungal activity against plant pathogens
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[46] One pot synthesis and anti-biofilm potential of copper nanoparticles (CuNPs) against clinical strains of Pseudomonas aeruginosa
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[47] Recovery of high value copper and zinc oxide powder from waste brass pickle liquor by solvent extraction
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[48] Antibacterial Activity and Cytocompatibility of PLGA/CuO Hybrid Nanofiber Scaffolds Prepared by Electrospinning
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[49] Eichhornia mediated copper oxide nanoparticles: Invitro analysis of antimicrobial activity
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[50] EICHHORNIA MEDIATED COPPER OXIDE NANOPARTICLES: IN VITRO ANALYSIS OF ANTIMICROBIAL ACTIVITY
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[51] Di-amidosils with tunable structure, morphology and emission quantum yield: the role of hydrogen bonding
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[52] Synthesis of New Composites of Inorganic Polymers (Geopolymers) with Metal Oxide Nanoparticles and their Photodegradation of Organic Pollutants
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[53] Synthesis and Characterization Of Copper Oxide Nanoparticles Against Dental Implant-Associated Infections
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[54] The effect of temperature on preparing CuO nanostructures for changing of electrical resistance.
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[55] Synthesis of copper nanoparticles with aegle marmelos leaf extract
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[56] The Effect of Temperature on Preparing CuO Nanostructures for Changing of Electrical Resistance
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[57] Cu2O polyhedral nanowires produced by microwave irradiation
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[58] Copper Nanoparticles: Synthetic Strategies, Properties and Multifunctional Application
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[59] CuO nanorods: a potential and efficient adsorbent in water purification
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[60] Synthesis and characterization of biocompatibility of tenorite nanoparticles and potential property against biofilm formation
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[61] Synthesis, characterization and evaluation of copper based nanoparticles as agrochemicals against Phytophthora infestans
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[62] Morphological and Optical Characteristics of Chitosan (: Cu ox (4≤ x≤ 12) Based Polymer Nano-Composites: Optical Dielectric Loss as an Alternative Method …
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