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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.
Planar tripods of 8 nm Rh nanoparticles, synthesized by a modified polyol reduction method, have a calculated local surface plasmon resonance near 330 nm.
Thus, our modified polyol reduction strategy proved facile technique to develop interjunction between different dimension and designed unique nano-assemblies.
In the present work, a modified polyol reduction method used to synthesize a nanostructured carbon-supported PdNi catalyst to improve the electrochemical performance of Pd catalysts.
A modified polyol reduction method used to prepare carbon-supported PdNi nanocatalyst in the presence of EG and NaBH4 as reducing agents.
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Carbon-supported Pd-Ni nanoalloy electrocatalysts with different Pd/Ni atomic ratios have been synthesized by a modified polyol method, followed by heat treatment in a reducing atmosphere at 500 900 °C.
Pt nanoparticles (NPs) were deposited onto NMCs using a modified polyol process.
A Pt electrocatalyst supported on T-KB was prepared by a modified polyol process.
This comparative study characterizes two types of metallic and core shell bimetallic nanoparticles prepared with our modified polyol method.
Pt/C catalysts were prepared by a modified polyol synthesis method in an ethylene glycol (EG) solution.
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