Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5149791 | Journal of Power Sources | 2017 | 9 Pages |
Abstract
Palladium nanomaterials have attracted great attention on the development of electrocatalysts for fuel cells. Herein, we depicted a novel strategy in the synthesis of palladium nanoparticles with superior electrocatalytic activity. The new approach, based on the self-assembly of bacitracin biotemplate and palladium salt for the preparation of bacitracin-palladium nanoparticles (Bac-PdNPs), was simple, low-cost, and green. The complex, composed by a series of spherical Bac-PdNPs with a diameter of 70Â nm, exhibited a chain-liked morphology in TEM and a face-centered cubic crystal structure in X-Ray diffraction and selected area electron diffraction. The palladium nanoparticles were mono-dispersed and stable in aqueous solution as shown in TEM and zeta potential. Most importantly, compared to the commercial palladium on carbon (Pd/C) catalyst (8.02Â m2Â gâ1), the Bac-PdNPs showed a larger electrochemically active surface area (47.57Â m2Â gâ1), which endowed the products an excellent electrocatalytic activity for ethanol oxidation in alkaline medium. The strategy in synthesis of Bac-PdNPs via biotemplate approach might light up new ideas in anode catalysts for direct ethanol fuel cells.
Related Topics
Physical Sciences and Engineering
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Authors
Yanji Li, Zi Wang, Xiaoling Li, Tian Yin, Kexin Bian, Faming Gao, Dawei Gao,