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Titlebook: Electrochemistry of Insertion Materials for Hydrogen and Lithium; Su-Il Pyun,Heon-Cheol Shin,Joo-Young Go Book 2012 Springer-Verlag Berlin

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,EG-Öko-Audit-Verordnung (EMAS),g, may influence the diffusion process in the electrode, because of the resulting inhomogeneous distribution of the atoms. The relationship between the diffusion and macroscopic deformation of the electrode can be classified into the elasto-diffusive and diffusion-elastic phenomena as schematically illustrated in Table 6.1 [1].
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Electrochemical Methods, current is larger than the limiting current, the required flux for the current cannot be provided by the diffusion process and, therefore, the electrode potential rapidly rises until it reaches the electrode potential of the next available reaction, and so on.
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1865-1836 ectrodes. The authors also outline various ways to analyze anomalous behaviour of hydrogen/lithium transport through insertion electrodes..978-3-642-44670-2978-3-642-29464-8Series ISSN 1865-1836 Series E-ISSN 1865-1844
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Planung, Steuerung und Controlling, a “diffusion-controlled” one [24–35]. This chapter deals with the typical anomalous lithium transport behaviors and explains the importance of the cell impedance as the main factor affecting lithium transport.
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Generation of Internal Stress During Hydrogen and Lithium Transport,g, may influence the diffusion process in the electrode, because of the resulting inhomogeneous distribution of the atoms. The relationship between the diffusion and macroscopic deformation of the electrode can be classified into the elasto-diffusive and diffusion-elastic phenomena as schematically illustrated in Table 6.1 [1].
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Book 2012s 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..
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