
Jiujun Zhang – PEM Fuel Cell Electrocatalysts and Catalyst Layers: Fundamentals and Applications
Springer | 2008 | ISBN: 1848009356 | Pages: 1159 | PDF | 41.95 MB
Proton mercantilism membrane (PEM) render cells, including H2/O2 (air) and methanol/O2 (air) render cells, are auspicious decent forcefulness converting devices with broad efficiency and baritone to set emissions. Such noesis sources crapper be utilised in transportation, stationary, takeout and micro noesis applications. The key components of these render cells are catalysts and accelerator layers.
PEM Fuel Cell Electrocatalysts and Catalyst Layers covers every of the basic aspects and applications of this field. The inaugural chapters inform the primary topics on electrochemical theory and render radiophone catalysis, including: electrode thermodynamics, kinetics, and accumulation transfer; electrode/electrolyte programme electrocatalysis; electrocatalytic reactions, including O2 change and H2/CH3OH oxidations; quantum alchemy simulations of accelerator activity; accelerator contamination; spectroscopic methods for catalysis research; porose pedal electrode theory; and accelerator layers and modeling. Later chapters analyse the synthesis, characterization, and state determination of PEM render radiophone catalysts. All render radiophone attendant catalysts are reviewed, including exalted and non-noble catalysts and their preparation/performance. Further chapters exposit in discourse the combining of the electrocatalyst/catalyst layers into the render cell, and their action validation, including; accelerator place scheme duty and optimization, accelerator humiliation and diagnosis, and strategies to mitigate the unfortunate modes.
PEM Fuel Cell Electrocatalysts and Catalyst Layers provides a comprehensive, in-depth analyse of PEM render radiophone electrocatalysts and accelerator layers, presented by internationally renowned render radiophone scientists. Researchers and engineers in the render radiophone business module encounter this aggregation a priceless resource, as module students of electrochemical field and accelerator synthesis.
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