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Electrochemistry of N4 Macrocyclic Metal Complexes


Electrochemistry of N4 Macrocyclic Metal Complexes

Volume 1: Energy
2nd ed. 2016

von: Jose H. Zagal, Fethi Bedioui

96,29 €

Verlag: Springer
Format: PDF
Veröffentl.: 20.04.2016
ISBN/EAN: 9783319311722
Sprache: englisch

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Beschreibungen

This
new edition describes the state of the art regarding molecular catalysts such
as MN4 metal complexes, like porphyrins and phthalocyanines. This volume
focuses on the particular case of the electrocatalysis of the reduction of O<sub>2</sub>
for practical applications in fuel cells and air batteries. Indeed, active and
stable materials have been developed in the last 5 years where MN4 catalytic
systems can be obtained by the pyrolysis of starting materials that do not
necessarily involve MN4 complexes. These latter systems constitute a new class
of stable and highly active non-precious metal catalysts for ORR that can
replace expensive Platinum containing electrodes.&nbsp;The book also offers
future projections and&nbsp;points out&nbsp;new fields of research and development
of these non-precious metal catalysts.
From the Contents: Electrocatalysis.- Billion-Year Old Oxygen Cathode that Actually Works.- Reactivity predictors of non-precious metal pyrolyzed MNx catalysts in the reduction of O2.- Heat treated MNx non-precious metal catalysts for oxygen reduction.- Advances in metalloporphyrin catalysts for oxygen reduction.
Fethi Bedioui is currently at Chimie Paris Tech. Jose Zagal is currently at Universidad de Santiago de Chile.
This
new edition describes the state of the art regarding molecular catalysts such
as MN4 metal complexes, like porphyrins and phthalocyanines.&nbsp;This volume
focuses on the particular case of the electrocatalysis of the reduction of O<sub>2</sub>
for practical applications in fuel cells and air batteries. Indeed, active and
stable materials have been developed in the last 5 years where MN4 catalytic
systems can be obtained by the pyrolysis of starting materials that do not
necessarily involve MN4 complexes. These latter systems constitute a new class
of stable and highly active non-precious metal catalysts for ORR that can
replace expensive Platinum containing electrodes.&nbsp;The book also offers
future projections and&nbsp;points out&nbsp;new fields of research and development
of these non-precious metal catalysts.
Offers insight into the applications of MN4 macrocycle complexes in electrocatalysis for energy applications, especially air batteries and fuel cells Discuses solar cells based on MN4 metal complexes Discusses the rich and reversible redox chemistry of metal complexes of MN4-ligands which allows them to serve as mediators in many electron transfer reactions Includes supplementary material: sn.pub/extras

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