Electrocatalysis for Membrane Fuel Cells

Methods, Modeling, and Applications

Electrocatalysis for Membrane Fuel Cells

Methods, Modeling, and Applications

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Electrocatalysis for Membrane Fuel Cells

Comprehensive resource covering hydrogen oxidation reaction, oxygen reduction reaction, classes of electrocatalytic materials, and characterization methods

Electrocatalysis for Membrane Fuel Cells focuses on all aspects of electrocatalysis for energy applications, covering perspectives as well as the low-temperature fuel systems principles, with main emphasis on hydrogen oxidation reaction (HOR) and the oxygen reduction reaction (ORR).

Following an introduction to basic principles of electrochemistry for electrocatalysis with attention to the methods to obtain the parameters crucial to characterize these systems, Electrocatalysis for Membrane Fuel Cells covers sample topics such as:

  • Electrocatalytic materials and electrode configurations, including precious versus non-precious metal centers, stability and the role of supports for catalytic nano-objects;
  • Fundamentals on characterization techniques of materials and the various classes of electrocatalytic materials;
  • Theoretical explanations of materials and systems using both Density Functional Theory (DFT) and molecular modelling;
  • Principles and methods in the analysis of fuel cells systems, fuel cells integration and subsystem design.

Electrocatalysis for Membrane Fuel Cells quickly and efficiently introduces the field of electrochemistry, along with synthesis and testing in prototypes of materials, to researchers and professionals interested in renewable energy and electrocatalysis for chemical energy conversion.

Nicolas Alonso-Vante is emeritus Professor since September 2021 at the University of Poitiers, France. In the field of materials science, electrocatalysis and photoelectrocatalysis, he has authored over 250 peer-reviewed publications, book chapters, editor of a two-volume e-book on electrochemistry in Spanish, author of two books and six patents, with more than 10320 citations and an h-index of 55 (ResearchGate). He has received the awards of the National Polytechnic Institute-Mexico as an R&D distinguished graduate, the Mexican Council of Technology SNI-III recognition as a Mexican researcher working outside Mexico, and has been awarded the NM Emanuel Medal from the Russian Academy of Science.

Vito Di Noto is Full Professor of Electrochemistry for Energy and Solid-State Chemistry in the Department of Industrial Engineering of the University of Padova, Italy. He is Fellow of the Electrochemical Society, Past-President of the Electrochemical Division of the Italian Chemical Society and the recipient of the 'Energy Technology Division Award' of The Electrochemical Society. In the field of advanced functional materials for electrochemical energy conversion and storage device, he is author of more than 335 international publications, with more than 9200 citations and an h-index of 54 (Google Scholar). He is inventor of more than 30 international patents.

ISBN 9783527830565
Artikelnummer 9783527830565
Medientyp E-Book - ePUB
Copyrightjahr 2023
Verlag Wiley-VCH
Umfang 576 Seiten
Sprache Englisch
Kopierschutz Adobe DRM