Please note: In order to keep Hive up to date and provide users with the best features, we are no longer able to fully support Internet Explorer. The site is still available to you, however some sections of the site may appear broken. We would encourage you to move to a more modern browser like Firefox, Edge or Chrome in order to experience the site fully.

Handbook of Nanocomposite Supercapacitor Materials II : Performance, Hardback Book

Handbook of Nanocomposite Supercapacitor Materials II : Performance Hardback

Edited by Kamal K. Kar

Part of the Springer Series in Materials Science series

Hardback

Description

This book covers the performance aspects of nanocomposite supercapacitor materials based on transition metal oxides, activated carbon, carbon nanotubes, carbon nanofibers, graphene and conducting polymers.

It compares the performance of simple electrode materials versus binary and ternary composites, while highlighting the advantages and challenges of different supercapacitor electrode materials. This book is part of the Handbook of Nanocomposite Supercapacitor Materials.

Supercapacitors have emerged as promising devices for electrochemical energy storage, playing an important role in energy harvesting for meeting the current demands of increasing global energy consumption.

The handbook covers the materials science and engineering of nanocomposite supercapacitors, ranging from their general characteristics and performance to materials selection, design and construction.

Covering both fundamentals and recent developments, this handbook serves a readership encompassing students,professionals and researchers throughout academia and industry, particularly in the fields of materials chemistry, electrochemistry, and energy storage and conversion.

It is ideal as a reference work and primary resource for any introductory senior-level undergraduate or beginning graduate course covering supercapacitors.

Information

£149.99

 
Free Home Delivery

on all orders

 
Pick up orders

from local bookshops

Information

Also in the Springer Series in Materials Science series  |  View all