4.7 Article

A novel graphite modified paper based cobalt- cobalt oxalate-nickel electrode for the electrooxidation of hydrogen peroxide

期刊

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
卷 47, 期 30, 页码 14077-14091

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2022.02.151

关键词

Cobalt-cobalt oxalate-nickel; Synergistic effect; Hydrogen peroxide; Electrooxidation; Paper electrode

资金

  1. National Natural Science Foun-dation of China [21703208]
  2. Scientific and Technologial Innovation Programs of Higher Education Institutions in Shanxi [201802077]
  3. Natural Science Foundation of Shanxi [201701D221047, 201901D111173]

向作者/读者索取更多资源

In this study, a novel paper-based electrode with a unique three-dimensional porous structure was successfully fabricated for the electrooxidation of H2O2 in alkaline environment. The electrode exhibited high catalytic activity due to the presence of nanomaterials and the synergistic effect. Moreover, the electrode preparation process without using any organic binder ensured good conductivity and stability.
The use of fossil energy has caused a serious burden on the environment, so it is urgent to find new and developable energy sources. H2O2 as a new type of clean fuel for fuel cell has received widespread attention. In this paper, a novel graphite modified paper based cobalt cobalt oxalate-nickel (FG@Co-CoC2O4-Ni) electrode is fabricated by the simple pencil depicting-electrodeposition-oxalic acid etching-electrodeposition process for the electrooxidation of H2O2 in alkaline environment. The as-prepared FG@Co-CoC2O4-Ni electrode owns a novel and special three-dimensional (3D) porous structure, which can greatly increase the diffusion of reactants (NaOH and H2O2) during the electrochemical reaction process and lead a high catalytic activity for the electrooxidation of H2O2. More importantly, three main nanomaterial (Co, CoC2O4 and Ni) and some new generated substances during the CV test in NaOH solution (e.g. Ni(OH)(2), NiOOH, Co(OH)(2), CoOOH, Co(3)O(4 )and Co2O3 etc.) are on the surface of paper, which will enhance the electrocatalytic activity of the FG@Co-CoC2O4-Ni electrode to a great extent due to their synergistic effect. When the reaction solution contains 1.0 mol dm(-3) NaOH and 0.2 mol dm(-3) H2O2, the FG@Co-CoC2O4-Ni electrode exhibits a much higher oxidation current density (270.6 mA cm(-2)) than the FG, FG@Co, FG@Ni, FG@Co-Ni and FG@Co-CoC2O4 electrodes. Besides, the whole preparation process for the FG@Co-CoC2O4-Ni electrode doesn't use any organic binder, ensuring the electrode owns good conductivity and stability for the electrochemical reaction. At last, the electrocatalytic mechanism for the electrooxidation of H2O2 is discussed. The Ni compounds and Co compounds are believed as the main catalytic substances, and the metallic Co core provides a fast route for the transfer of electrons. The super catalytic activity makes the prepared electrode in this study to be a promising material for the electrooxidation of H2O2 and the novel design idea gives some guidance for the fabrication of electrode materials in the field of fuel cell. (C)& nbsp;2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

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