Ag/Co3O4 as an effective catalyst for glycerol electro-oxidation in alkaline medium
Author | Ashok, Anchu |
Author | Kumar, Anand |
Available date | 2022-09-15T07:07:58Z |
Publication Date | 2021 |
Publication Name | International Journal of Hydrogen Energy |
Resource | Scopus |
Abstract | Herein, we report two different modes of combustion synthesis to prepare Ag/Co3O4 for glycerol electro-oxidation reaction. The synthesis technique allows us to deposit and disperse cobalt on the surface of silver and understand the effect of silver-cobalt interactions on the electrocatalytic performance. The bimetallic AgCo catalyst was synthesized via conventional solution combustion (AgCo-SCS); in addition, a novel second wave solution combustion synthesis (AgCo-SWC) was also used to synthesize a sample with a higher degree of surface alloying between the elements. XRD results of AgCo-SWC show peak shifts in 2? to indicate the formation of a solid solution alloy that could improve the structural and electronic characteristic of the material. In AgCo-SCS, smaller Ag particles are found to be more on the surface, while in AgCo-SWC, Ag particles were largely covered with cobalt particles. The electro-oxidation results indicate that AgCo-SWC has improved electrochemical properties in terms of higher oxidation current and lower onset potential, which makes it an ideal candidate for glycerol oxidation reaction. |
Sponsor | This publication was made possible by NPRP grant ( NPRP8-145-2-066 ) from the Qatar National Research Fund (a member of Qatar Foundation). The statements made herein are solely the responsibility of the authors. We would like to thank the Gas Processing Centre for conducting XRD and XPS analysis. The SEM and TEM analysis were accomplished in the Central Laboratory Unit, Qatar University . |
Language | en |
Publisher | Elsevier Ltd |
Subject | Glycerol electro-oxidation Second wave combustion synthesis Solution combustion synthesis |
Type | Article |
Pagination | 4788-4797 |
Issue Number | 6 |
Volume Number | 46 |
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Chemical Engineering [1174 items ]