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Volumn 55, Issue 1, 2009, Pages 210-217
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Size-controlled synthesis and impedance-based mechanistic understanding of Pd/C nanoparticles for formic acid oxidation
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Author keywords
Electrochemical Impedance; Formic acid oxidation; Nanocatalyst; Palladium
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Indexed keywords
ADSORBED CO SPECIES;
ADSORBED OXYGEN;
AVERAGE SIZE;
CATALYST SURFACES;
ELECTROCHEMICAL CHARACTERIZATIONS;
ELECTROCHEMICAL IMPEDANCE;
FORMIC ACID ELECTROOXIDATION;
FORMIC ACID OXIDATION;
HIGH POTENTIAL;
IMPEDANCE SPECTRUM;
KOH CONCENTRATION;
NANOCATALYST;
NANOCATALYSTS;
NEGATIVE POLARIZATION RESISTANCE;
OXIDATION REACTIONS;
PD NANO PARTICLE;
PD PARTICLE;
POTENTIAL-DEPENDENT;
SIMPLE PROTOCOL;
SIZE CONTROLLED SYNTHESIS;
SIZE RANGES;
SYNTHESIS METHOD;
ACID RESISTANCE;
CARBON MONOXIDE;
DISSOLUTION;
ELECTROCHEMICAL CORROSION;
ELECTROCHEMICAL PROPERTIES;
ETHYLENE;
ETHYLENE GLYCOL;
NANOPARTICLES;
ORGANIC ACIDS;
OXIDATION;
OXYGEN;
PALLADIUM;
PLATINUM ALLOYS;
FORMIC ACID;
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EID: 70349483869
PISSN: 00134686
EISSN: None
Source Type: Journal
DOI: 10.1016/j.electacta.2009.08.039 Document Type: Article |
Times cited : (68)
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References (37)
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