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  • Format: ePub

Batteries are an essential component of energy storage research. Next-generation batteries could allow for cheap, efficient electric transport and revolutionise the storage and release of electricity on the grid. This research and reference text provides an introduction to battery fundamentals, exploring the state-of-the-art characterisation methods currently employed by the energy storage community.
Covering the essential electrochemistry, impedance spectroscopy, solid state chemistry, electrochemical engineering, materials sciences and in-situ characterization methods for batteries, the
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Produktbeschreibung
Batteries are an essential component of energy storage research. Next-generation batteries could allow for cheap, efficient electric transport and revolutionise the storage and release of electricity on the grid. This research and reference text provides an introduction to battery fundamentals, exploring the state-of-the-art characterisation methods currently employed by the energy storage community.

Covering the essential electrochemistry, impedance spectroscopy, solid state chemistry, electrochemical engineering, materials sciences and in-situ characterization methods for batteries, the text acquaints non-battery researchers with the field, and provides a comprehensive reference for specialists in sub-fields of battery research.

With a focus on Li-ion batteries, contextualised against a discussion of newer, disruptive technologies such as Li-air and Mg-ion batteries, the text covers traditional characterisation methods, such as the Nernst Equation, the Nyquist Plot and the Bode plot in impedance spectroscopy, alongside cutting-edge methods that include DEMS, synchrotron, in situ HR XRD, XANES/EXAFS and FTIR. It is ideal for researchers and students interested in the materials and characterization methods for batteries, including those without a background in electro- or solid-state chemistry.


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