Advances in Materials Physics and Chemistry

Advances in Materials Physics and Chemistry

ISSN Print: 2162-531X
ISSN Online: 2162-5328
www.scirp.org/journal/ampc
E-mail: ampc@scirp.org
"Preparation for Graphite Materials and Study on Electrochemical Degradation of Phenol by Graphite Cathodes"
written by Xiujuan Yu, Liwen Qiang,
published by Advances in Materials Physics and Chemistry, Vol.2 No.2, 2012
has been cited by the following article(s):
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[6] Synthesis of Pd/CeOx/Nano-graphite composite cathode for electro-catalytic degradation of phenol
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[7] Novel Crosslinked Sulfonated PVA/PEO Doped with Phosphated Titanium Oxide Nanotubes as Effective Green Cation Exchange Membrane for Direct Borohydride …
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[8] Development novel eco-friendly proton exchange membranes doped with nano sulfated zirconia for direct methanol fuel cells
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[9] Organic-Inorganic Novel Green Cation Exchange Membranes for Direct Methanol Fuel Cells
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[10] Study of Some Mechanical and Electrical Properties of Epoxy/Carbon/Nano Copper Composite
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[11] Application of Modified Metal Oxide Electrodes in Photoelectrochemical
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[12] Application of Modified Metal Oxide Electrodes in Photoelectrochemical Removal of Organic Pollutants from Wastewater
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[13] A highly efficient nano-graphite-doped TiO 2 photocatalyst with a unique sea-island structure for visible-light degradation
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[14] PENGARUH THERMAL SHOCK DAN KOMPOSISI GRAFIT, KAOLIN (CLAY) TERHADAP KETAHANAN IMPACT DAN STRUKTUR MAKRO KOWI BERBAHAN …
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[15] Influence of Electrode Distance on Electrical Energy Production of Microbial Fuel Cell using Tapioca Wastewater
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[16] A three-dimensional hierarchical porous carbon cathode derived from waste tea-leaves for the electrocatalytic degradation of phenol
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[17] Poly (vinyl alcohol)-based crosslinked ternary polymer blend doped with sulfonated graphene oxide as a sustainable composite membrane for direct borohydride fuel …
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[18] Preparation of RuO2-TiO2/Nano-graphite composite anode for electrochemical degradation of ceftriaxone sodium
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[19] Enhancement of somaclonal variations and genetic diversity using graphite nanoparticles (GtNPs) in sweet potato plants
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[20] Enhanced electro-catalytic generation of hydrogen peroxide and hydroxyl radical for degradation of phenol wastewater using MnO2/Nano-G|Foam-Ni/Pd composite …
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[21] C-doping into h-BN at low annealing temperature by alkaline earth metal borate for photoredox activity
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[22] Nanolayer Research: Methodology and Technology for Green Chemistry
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[23] Ultrasound assisted formation of reduced graphene oxide-copper (II) oxide nanocomposite for energy storage applications
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[24] Fabrication of reduced graphene oxide-graphite paste electrode for H 2 O 2 formation and its implication for ciprofloxacin degradation
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[25] Structural, optical, and electrical characteristics of graphene nanosheets synthesized from microwave-assisted exfoliated graphite
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[26] Fabrication of reduced graphene oxide-graphite paste electrode for H2O2 formation and its implication for ciprofloxacin degradation
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[27] Research Article Photoluminescence Response in Carbon Films Deposited by Pulsed Laser Deposition onto GaAs Substrates at Low Vacuum
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[28] Study on preparation of SnO 2-TiO 2/Nano-graphite composite anode and electro-catalytic degradation of ceftriaxone sodium
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[29] Photoluminescence Response in Carbon Films Deposited by Pulsed Laser Deposition onto GaAs Substrates at Low Vacuum
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[30] An Exfoliated Graphite Based Electrochemical Sensor for As (III) in Water
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[31] Supercapacitor Performance of Expanded Magnetic Graphene Composites
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[34] Study on preparation of SnO2-TiO2/Nano-graphite composite anode and electro-catalytic degradation of ceftriaxone sodium
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[35] Green synthesis of less defect density bilayer graphene
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[36] Insight on the effect of surface modification by carbon materials on the Ionic Liquid Electric Double Layer Charge Storage properties
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[37] Preparation of RuO2/Nano-Graphite Cathode for Electrocatalytic Degradation of Phenol
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[38] Preparation and photoelectrochemical performance of expanded graphite/TiO< sub> 2 composite
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[39] Comparative study on different proportions of Ru dope nano-graphite for electro catalytic oxidation of phenol
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[40] Preparation and photoelectrochemical performance of expanded graphite/TiO2 composite
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