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
"Carbonaceous Nanostructured Support Materials for Low Temperature Fuel Cell Electrocatalysts—A Review"
written by Maryam Yaldagard, Mohsen Jahanshahi, Naser Seghatoleslami,
published by World Journal of Nano Science and Engineering, Vol.3 No.4, 2013
has been cited by the following article(s):
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[5] Enhanced Methanol Oxidation Activity of PtRu/C100− xMWCNTsx (x= 0–100 wt.%) by Controlling the Composition of C-MWCNTs Support. Coatings 2021, 11 …
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[7] Carbon Monoxide Tolerant Pt-Based Electrocatalysts for H2-PEMFC Applications: Current Progress and Challenges
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[8] The effect of non-spherical platinum nanoparticle sizes on the performance and durability of proton exchange membrane fuel cells
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[9] A critical assessment on functional attributes and degradation mechanism of membrane electrode assembly components in direct methanol fuel cells
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[10] Pd nanoparticles assembled on Ni-and N-doped carbon nanotubes towards superior electrochemical activity
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[11] Supported bimetallic nanoparticles as anode catalysts for direct methanol fuel cells: A review
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[12] Recent developments of nanocarbon based supports for PEMFCs electrocatalysts
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[13] Enhanced Methanol Oxidation Activity of PtRu/C100− xMWCNTsx (x= 0–100 wt.%) by Controlling the Composition of C-MWCNTs Support
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[14] Desenvolvimento de catalisadores seletivos para a eletroxidação de glicerol em reformadores eletroquímicos
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[16] High Methanol Electro-Oxidation Using PtCo/Reduced Graphene Oxide (rGO) Anode Nanocatalysts in Direct Methanol Fuel Cell
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[17] Effect of Carbon Support on the Electrocatalytic Performance of the Pt Nanoparticles Toward Oxidation of Formic Acid
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[18] The relationship between inherent properties of carbon nanotubes and electrochemical durability of supported-Pt catalysts
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[19] Platinum-Based Carbon Nanodots Nanocatalysts for Direct Alcohol Fuel Cells
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[20] Electro-oxidation of ethylene glycol on PtCo metal synergy for direct ethylene glycol fuel cells: Reduced graphene oxide imparting a notable surface of action
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[21] NEW SULFUR-DOPED CARBON FIBER–SUPPORTED ALLOYS FOR ELECTROCATALYTIC REDUCTION OF OXYGEN FOR PEM FUEL CELLS APPLICATIONS
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[27] CVD grown graphene as catalyst for acid electrolytes
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[29] Synthesis, characterization and comparison of polythiophene–carbon nanocomposite materials as Pt electrocatalyst supports for fuel cell applications
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[33] Optimization and Tunability of 2D Graphene and 1D Carbon Nanotube Electrocatalysts Structure for PEM Fuel Cells
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[34] PtCo/rGO nano-anode catalyst: enhanced power density with reduced methanol crossover in direct methanol fuel cell
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[35] FACILE SYNTHESIS OF WELL DISPERSED AU NANOPARTICLES ON REDUCED GRAPHENE OXIDE.
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[37] In-Situ and Computational Studies of Ethanol Electrooxidation Reaction: Rational Catalyst Design Strategies
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[38] Facile synthesis of highly conducting and mesoporous carbon aerogel as platinum support for PEM fuel cells
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[40] Cost-effective and durable graphene based oxygen electro-catalysts in alkaline media
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[47] Pt/MWCNT and Pt/f-MWCNT Catalysts Preparation by Hydrogen Reduction and Impregnation Method: The Application to Methanol Oxidation Reaction
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[48] Facile sonochemical synthesis of highly dispersed ultrafine Pd nanoparticle decorated carbon nano-onions with high metal loading and enhanced …
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[49] Advanced Anode Catalysts for Direct Alcohol Fuel Cells
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[50] Sonoelectrochemical one-pot synthesis of Pt–Carbon black nanocomposite PEMFC electrocatalyst
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[51] Pd/c-PANI electrocatalysts for direct borohydride fuel cells
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[52] Application of the magnetron sputtering for nanostructured electrocatalysts synthesis
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[53] Facile sonochemical synthesis of highly dispersed ultrafine Pd nanoparticle decorated carbon nano-onions with high metal loading and enhanced electrocatalytic …
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[54] Graphitized carbon as an efficient mesoporous layer for unitized regenerative fuel cells
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[55] Highly Efficient Oxygen Reduction Catalysts by Rational Synthesis of Nanoconfined Maghemite in a Nitrogen-Doped Graphene Framework
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[56] Comparison of two different catalyst preparation methods for graphene nanoplatelets supported platinum catalysts
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[57] Electrochemical Study of PT Deposited Pyrolysed Glucose and Sucrose
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[58] Chapter 1 Advanced Anode Catalysts for Direct Alcohol Fuel Cells
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[59] Pt–CeO 2/reduced graphene oxide nanocomposite for the electrooxidation of formic acid and formaldehyde
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[60] Palladium nanoparticles/nanostructured carbon black composite on carbon–ceramic electrode as an electrocatalyst for formic acid fuel cells
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