LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

In-situ synthesis of palladium-base binary metal oxide nanoparticles with enhanced electrocatalytic activity for ethylene glycol and glycerol oxidation

Photo by unstable_affliction from unsplash

Abstract To achieve the better electrocatalytic activity and stability of Pd-base catalysts for ethylene glycol and glycerol oxidation reactions, a novel Pd-base binary Pd Co oxides nanoparticles (Pd PdO-CoOx) was… Click to show full abstract

Abstract To achieve the better electrocatalytic activity and stability of Pd-base catalysts for ethylene glycol and glycerol oxidation reactions, a novel Pd-base binary Pd Co oxides nanoparticles (Pd PdO-CoOx) was synthesized by in-situ oxidation of Pd Co precursor. The strategy was simple, mild, green and efficient. The prepared nanoparticles exhibited a mutually connected, fused irregular nanoparticles in TEM. The as-synthesized Pd PdO-CoOx (1:4) nanoparticles displayed prominent catalytic activity (5.82 A m g Pd − 1 for ethylene glycol and 5.16 A m g Pd − 1 for glycerol) for ethylene glycol and glycerol oxidation reactions in alkaline solution compared to the commercial Pt/C (1.64 A m g Pt − 1 for ethylene glycol and 1.48 A m g Pt − 1 for glycerol) catalyst. The improved electrocatalytic activity of Pd PdO-CoOx catalyst mainly ascribes to the producing Strong Metal-Support Interactions (SMSI) between PdO-CoOx and Pd nanoparticles, the synergistic effect between PdO and CoOx and the presence of CoOx promoved hydroxyl adsorption at lower potentials. Combined with the simple synthetic method, lower cost and good performance, Pd PdO-CoOx is a promising catalyst for direct fuel cells.

Keywords: glycol glycerol; oxidation; pdo coox; ethylene glycol; activity

Journal Title: International Journal of Hydrogen Energy
Year Published: 2017

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.