4.6 Article

Hierarchical oxygen reduction reaction electrocatalysts based on FeSn0.5 species embedded in carbon nitride-graphene based supports

期刊

ELECTROCHIMICA ACTA
卷 280, 期 -, 页码 149-162

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.electacta.2018.05.126

关键词

Hierarchical core-shell carbon nitride electrocatalysts; Graphene; Oxygen reduction reaction; Wide-angle X-ray diffraction; CV-TF-RRDE method

资金

  1. European Commission through the Graphene Flagship - Core 1 project [GA-696656]
  2. Strategic Project of the University of Padova From Materials for Membrane-Electrode Assemblies to Electric Energy Conversion and Storage Devices - MAESTRA [STPD11XNRY]
  3. program Budget Integrato per la Ricerca Interdipartimentale - BIRD 2016 of the University of Padova [BIRD164837/16]
  4. Maestro Project from National Science Center, Poland [2012/04/A/ST4/00287]

向作者/读者索取更多资源

This work reports the synthesis, the physicochemical characterization and the electrochemical studies of new electrocatalysts (ECs) for the oxygen reduction reaction (ORR) that: (i) exhibit a hierarchical architecture; and (ii) do not comprise platinum. The active sites of the ECs consist of Fe and Sn species stabilized in coordination nests of a carbon nitride (CN) matrix. The latter exhibits a rough, microporous morphology and acts as a shell covering a graphene core. This paper: (i) discusses the role played by Fe as the active metal in this family of ECs; and (ii) examines in detail how the physicochemical properties and, correspondingly, the electrochemical performance are affected by a suitable activation procedure A meant to boost the ORR kinetics. The results lead to an improved fundamental understanding on the features of the active sites, including the impact of both A and the pH of the environment in their performance and ORR mechanism. These insights clarify the most desirable features to be included in high-performing ECs belonging to this family, paving the way to the synthesis of next-generation, efficient ECs for the ORR that do not comprise platinum. (C) 2018 Elsevier Ltd. All rights reserved.

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