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Metal-Ion Hybrid Capacitor for Energy Storage - Toward Increased Energy and Power Density (Hardcover, 1st ed. 2020) Loot Price: R1,633
Discovery Miles 16 330
Metal-Ion Hybrid Capacitor for Energy Storage - Toward Increased Energy and Power Density (Hardcover, 1st ed. 2020): Aneeya...

Metal-Ion Hybrid Capacitor for Energy Storage - Toward Increased Energy and Power Density (Hardcover, 1st ed. 2020)

Aneeya Kumar Samantara, Satyajit Ratha

Series: SpringerBriefs in Energy

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Loot Price R1,633 Discovery Miles 16 330 | Repayment Terms: R153 pm x 12*

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Rapid growth in the research and development of clean energy storage techniques has yielded a significant number of electrochemically active compounds/materials possessing enormous potential to facilitate the fabrication of next generation devices such as the supercapacitor. This Brief describes recent progress in the field of metal-ion based hybrid electrical energy storage devices, with emphasis on the effect of different metal ions and other constituent components on the overall electrochemical performance of battery-supercapacitor hybrids (BSHs). Although significant efforts have been made to create an effective electrical energy storage system that would have the energy density of a battery and the power density of a supercapacitor, persistent challenges still lie in combining these two altogether different systems to form a cost-effective and safe storage device. Detailed comparisons of output performance and longevity (in terms of cyclic stability) are provided, including device fabrication cost and safety. Of the several proposed schematics/prototypes, hybrid supercapacitors, with both carbon-based EDLC electrode and pure faradic (battery type) electrode can work in tandem to yield high energy densities with little degradation in specific power. As a promising electric energy storage device, supercapacitors address several critical issues in various fields of applications from miniaturized electronic devices and wearable electronics to power hungry heavy automobiles. Depending on the electrode configuration and other controlling parameters, these BSHs can have contrasting performance statistics. Metal ion BSHs such as Li+, Na+, Mg+2, Zn+2 etc., acid-alkaline BSHs, and redox electrolyte based BSHs all represent recent approaches, with BSHs based on metal ions, particularly Lithium, of particular interest because of the extreme popularity of Li-ion based batteries. This book is written for a broad readership of graduate students and academic and industrial researchers who are concerned with the growth and development of sustainable energy systems where efficient and cost-effective storage is key.

General

Imprint: Springer Nature Switzerland AG
Country of origin: Switzerland
Series: SpringerBriefs in Energy
Release date: November 2020
First published: 2020
Authors: Aneeya Kumar Samantara • Satyajit Ratha
Dimensions: 235 x 155mm (L x W)
Format: Hardcover
Pages: 116
Edition: 1st ed. 2020
ISBN-13: 978-3-03-060811-8
Categories: Books > Science & Mathematics > Chemistry > Physical chemistry > Electrochemistry & magnetochemistry
Books > Professional & Technical > Mechanical engineering & materials > Materials science > General
Books > Professional & Technical > Energy technology & engineering > Electrical engineering > Energy conversion & storage
LSN: 3-03-060811-5
Barcode: 9783030608118

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