Electrochemical Capacitors
Kumagai, Seiji
Electrochemical Capacitors - Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020 - 1 electronic resource (92 p.)
Open Access
Electrochemical capacitors are being increasingly introduced in energy storage devices, for example, in automobiles, renewable energies, and mobile terminals. This book includes five high-quality papers that can lead to technological developments in electrochemical capacitors. The first paper describes the effect of the milling degree of activated carbon particles used in the electrodes on the supercapacitive performance of an electric double-layer capacitor. The second, fourth, and fifth papers describe novel electrode materials that have the potential to enhance the performance of next-generation electrochemical capacitors. Nickel molybdate/reduced graphene oxide nanocomposite, copper-decorated carbon nanotubes, and nickel hydroxide/activated carbon composite are tested, and are shown to be promising candidates for next-generation electrochemical capacitors. The third paper reports the hybrid utilization of electrochemical capacitors with other types of energy devices (photovoltaics, fuel cells, and batteries) in a DC microgrid, which ensures wider applications of electrochemical capacitors in the near future. The knowledge and experience in this book are beneficial in manufacturing and utilizing electrochemical capacitors. Cutting-edge knowledge related to novel electrode nano-materials is also helpful to design next-generation electrochemical capacitors. This book delivers useful information to specialists involved in energy storage technologies.
Creative Commons
English
books978-3-03936-723-8 9783039367221 9783039367238
10.3390/books978-3-03936-723-8 doi
History of engineering & technology
CNT copper composite energy storage DC microgrid energy management hybrid power system energy efficiency nickel-cobalt hydroxide activated carbon hybrid capacitor prototype case study KOH aqueous electrolyte energy storage device coin-cell prototype electrochemical performance starch porous structure NiMoO4/3D-rGO nanocomposite NiMoO4 NPs ball milling electric double-layer capacitor supercapacitor electrode specific capacitance energy density power density
Electrochemical Capacitors - Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020 - 1 electronic resource (92 p.)
Open Access
Electrochemical capacitors are being increasingly introduced in energy storage devices, for example, in automobiles, renewable energies, and mobile terminals. This book includes five high-quality papers that can lead to technological developments in electrochemical capacitors. The first paper describes the effect of the milling degree of activated carbon particles used in the electrodes on the supercapacitive performance of an electric double-layer capacitor. The second, fourth, and fifth papers describe novel electrode materials that have the potential to enhance the performance of next-generation electrochemical capacitors. Nickel molybdate/reduced graphene oxide nanocomposite, copper-decorated carbon nanotubes, and nickel hydroxide/activated carbon composite are tested, and are shown to be promising candidates for next-generation electrochemical capacitors. The third paper reports the hybrid utilization of electrochemical capacitors with other types of energy devices (photovoltaics, fuel cells, and batteries) in a DC microgrid, which ensures wider applications of electrochemical capacitors in the near future. The knowledge and experience in this book are beneficial in manufacturing and utilizing electrochemical capacitors. Cutting-edge knowledge related to novel electrode nano-materials is also helpful to design next-generation electrochemical capacitors. This book delivers useful information to specialists involved in energy storage technologies.
Creative Commons
English
books978-3-03936-723-8 9783039367221 9783039367238
10.3390/books978-3-03936-723-8 doi
History of engineering & technology
CNT copper composite energy storage DC microgrid energy management hybrid power system energy efficiency nickel-cobalt hydroxide activated carbon hybrid capacitor prototype case study KOH aqueous electrolyte energy storage device coin-cell prototype electrochemical performance starch porous structure NiMoO4/3D-rGO nanocomposite NiMoO4 NPs ball milling electric double-layer capacitor supercapacitor electrode specific capacitance energy density power density
