Springer Theses- Phosphate Based Cathodes and Reduced Graphene Oxide Composite Anodes for Energy Storage Applications

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  • Engels
  • Paperback
  • 9789811095870
  • 12 juni 2018
  • 148 pagina's
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This thesis outlines the investigation of various electrode materials for Li-ion battery (LIB) applications.

This work describes the detailed synthesis and structural studies of various novel phosphate based cathode materials and reduced graphene oxide (rGO) composites as anode materials.


This thesis outlines the investigation of various electrode materials for Li-ion battery (LIB) applications. Li-ion batteries are widely used in various portable electronic devices owing to their compactness, light weight, longer life, design flexibility and environment friendliness.

This work describes the detailed synthesis and structural studies of various novel phosphate based cathode materials and reduced graphene oxide (rGO) composites as anode materials. Their electrochemical characterization as electrode for LIBs has been investigated in detail. The thesis also includes a comprehensive introduction for non-specialists in this field. The research could benefit and will appeal to scientists, especially new researchers working in the field of energy storage.



This thesis outlines the investigation of various electrode materials for Li-ion battery (LIB) applications. Li-ion batteries are widely used in various portable electronic devices owing to their compactness, light weight, longer life, design flexibility and environment friendliness.

This work describes the detailed synthesis and structural studies of various novel phosphate based cathode materials and reduced graphene oxide (rGO) composites as anode materials. Their electrochemical characterization as electrode for LIBs has been investigated in detail. The thesis also includes a comprehensive introduction for non-specialists in this field. The research could benefit and will appeal to scientists, especially new researchers working in the field of energy storage.

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Taal
en
Bindwijze
Paperback
Oorspronkelijke releasedatum
12 juni 2018
Aantal pagina's
148
Illustraties
Nee

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Hoofduitgeverij
Springer Verlag, Singapore

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Editie
Softcover reprint of the original 1st ed. 2016
Extra groot lettertype
Nee
Product breedte
155 mm
Product lengte
235 mm
Studieboek
Ja
Verpakking breedte
155 mm
Verpakking hoogte
235 mm
Verpakking lengte
235 mm
Verpakkingsgewicht
454 g

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9789811095870
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