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What Determines Electrochemical Surface Processes on Carbon Supported PdAu Nanoparticles?
(Amer Chemical Soc, 2018-03-01)
Supported bimetallic nanoparticles have good activities in heterogeneous catalysis and electrocatalysts. Among those systems, PdAu shows improved stability and enhanced catalytic activity toward electrochemical reactions ...
What Determines Electrochemical Surface Processes on Carbon-Supported PdAu Nanoparticles?
(2018-03-02)
Supported bimetallic nanoparticles have good activities in heterogeneous catalysis and electrocatalysts. Among those systems, PdAu shows improved stability and enhanced catalytic activity toward electrochemical reactions ...
Theoretical Study of Hydrogen Adsorption on Au@Pd Icosahedral Nanoparticle
(American Chemical Society, 2017-04-06)
First-principles calculations based on the density functional theory (DFT) were applied to study the H2 adsorption on Au@Pd NP (core@shell icosahedral bimetallic nanoparticle). The calculations indicate that, for almost ...
Synthesis of Pd-Au bimetallic nanoparticles for application in catalysis
(GALVEZ RAMIREZ, JAVIER ELISEO, 4240)
Synthesis of Pd-Au bimetallic nanoparticles for application in catalysis
(GALVEZ RAMIREZ, JAVIER ELISEO, 2016)
Surface structure and electronic properties of carbon supported PdAu nanoparticles and their catalytic behavior toward the oxygen reduction reaction
(Universidade Estadual Paulista (Unesp), 2018-03-14)
Carbon supported PdAu nanoparticles with different Au contents (20-50% in atoms) were synthesized using a procedure carried out in a liquid two-phase system. As-prepared materials presented similar average particle diameter ...
Pd and In addition onto Au nanoparticles supported on TiO2 as a catalytic formulation for NO3 − reduction in water
(Springer Netherlands, 2016-11)
The catalytic performance of Pd–In–Au/TiO2 was studied for the reduction of nitrites and nitrates in water and compared with that of Au, Pd, Pd–In, In–Au and Pd–Au supported on TiO2. Different characterization techniques ...
Magnetically recoverable AuPd nanoparticles prepared by a coordination capture method as a reusable catalyst for green oxidation of benzyl alcohol
(Royal Soc ChemistryCambridgeInglaterra, 2013)