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This comparative study characterizes two types of metallic and core shell bimetallic nanoparticles prepared with our modified polyol method.
Catalysts were synthesized using the modified polyol method and deposited on carbon, resulting in 20 wt.% of metal loading.
Carbon supported nanoparticle catalysts of PdxPt1−x (0 ≥ x ≥ 1) were synthesized using a modified polyol method and poly N-vinyl-2-pyrrolidone) (poly N-vinyl-2-pyrrolidone
Highly active and stable carbon supported PtSnO2 catalyst with Pt:Sn ratio of 3 1 is prepared by a modified polyol method.
The 20 wt.% Pt/C electrocatalyst was synthesized by a modified polyol method and was physically characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM).
Carbon supported PtSn alloy and PtSnOx particles with nominal Pt:Sn ratios of 3 1 were prepared by a modified polyol method.
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Pt/C catalysts were prepared by a modified polyol synthesis method in an ethylene glycol (EG) solution.
Commercial carbon black, Vulcan XC-72 was used as support, while Pt/C catalyst was prepared by modified polyol synthesis method in an ethylene glycol (EG) solution.
Pt Fe/C catalysts were prepared by a modified polyol synthesis method in an ethylene glycol (EG) solution, and then were heat-treated under H2/Ar (10 vol.%) at moderate temperature (300 °C, Pt Fe/C300) or high temperature (900 °C, Pt Fe/C900).
The modified polyol reduction method was used to prepare a carbon-supported bimetallic PdNi nanoalloys (BMNAs).
A modified polyol reduction method was used to synthesis of carbon-supported Pd68Ni32 bimetallic nanocatalyst.
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