Fluorination and its Effects on Electrocatalysts for Low‐Temperature Fuel Cells

Author:

Chatenet Marian1,Berthon‐Fabry Sandrine2,Ahmad Yasser3,Guérin Katia24,Colin Marie4,Farhat Hani4,Frezet Lawrence4,Zhang Gaixia5,Dubois Marc4ORCID

Affiliation:

1. Univ. Grenoble Alpes Univ. Savoie Mont Blanc CNRS Grenoble INP (Institute of Engineering and Management Univ. Grenoble Alpes) LEPMI Grenoble 38000 France

2. MINES ParisTech PSL University Centre for processes renewable energy and energy systems (PERSEE) CS 10207, Sophia Antipolis Cedex Daunesse 06904 France

3. Department of Natural Sciences College of Science and Humanities Fahad Bin Sultan University Tabuk 71454 Kingdom of Saudi Arabia

4. Université Clermont Auvergne Clermont Auvergne INP CNRS Institut de Chimie de Clermont‐Ferrand (ICCF) Clermont–Ferrand Clermont F‐63000 France

5. Department of Electrical Engineering École de Technologie Supérieure (ÉTS) Montréal Québec H3C 1K3 Canada

Abstract

AbstractThe benefits of covalent grafting of fluorine atoms onto carbonaceous materials are described for the design of new electrocatalysts for low‐temperature fuel cells. In order to obtain the best results, the fluorination conditions must be carefully chosen according to the physicochemical properties of the starting materials (specific surface area, pore size distribution, crystallinity, and doping). By describing the main fluorination routes, the article aims to help in the choice of efficient treatment conditions. The effects of fluorination on the performance of the platinum group metal (PGM)‐based catalyst and the non‐PGM‐based electrocatalyst are discussed. Finally, future research prospects and technical challenges of fluorination for fuel cells are proposed.

Publisher

Wiley

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

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