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Pyun S.-I. et al. Electrochemistry of Insertion Materials for Hydrogen and Lithium

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Pyun S.-I. et al. Electrochemistry of Insertion Materials for Hydrogen and Lithium
Su-Il Pyun, Heon-Cheol Shin, Jong-Won Lee and Joo-Young Go. — Heidelberg; New York; Dordrecht; London: Springer, 2012. — X, 249 p. — ISBN: 978-3-642-29463-1; ISBN: 978-3-642-29464-8 (eBook).
The understanding of hydrogen/lithium insertion phenomena is of great importance for the development of the next generation of functional electrochemical devices such as rechargeable batteries, electrochromic devices, and fuel cells. This volume introduces a variety of viable electrochemical methods to identify reaction mechanisms and evaluate relevant kinetic properties of insertion electrodes. The authors also outline various ways to analyze anomalous behaviour of hydrogen/lithium transport through insertion electrodes.
Electrochemical Methods
Hydrogen Absorption into and Subsequent Diffusion through Hydride-Forming Metals
Hydrogen Transport under Impermeable Boundary Conditions
Hydrogen Trapping inside Metals and Metal Oxides
Generation of Internal Stress during Hydrogen and Lithium Transport
Abnormal Behaviors in Hydrogen Transport: Importance of Interfacial Reactions
Effect of Cell-impedance on Lithium Transport
Lithium Transport through Electrode with Irregular/Partially-Inactive Interfaces.
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