
Inorganic Nanomaterials for Supercapacitor Design
CRC Press
1st Edition
Published on 13. December 2021
Book
Paperback/Softback
364 pages
978-1-032-23816-6 (ISBN)
Description
Among electrode materials, inorganic materials have received vast consideration owing to their redox chemistry, chemical stability, high electrochemical performance, and high-power applications. These exceptional properties enable inorganic-based materials to find application in high-performance energy conversion and storage. The current advances in nanotechnology have uncovered novel inorganic materials by various strategies and their different morphological features may serve as a rule for future supercapacitor electrode design for efficient supercapacitor performance. Inorganic Nanomaterials for Supercapacitor Design depicts the latest advances in inorganic nanomaterials for supercapacitor energy storage devices.
Key Features:
? Provides an overview on the supercapacitor application of inorganic-based materials.
? Describes the fundamental aspects, key factors, advantages, and challenges of inorganic supercapacitors.
? Presents up-to-date coverage of the large, rapidly growing, and complex literature on inorganic supercapacitors.
? Surveys current applications in supercapacitor energy storage.
? Explores the new aspects of inorganic materials and next-generation supercapacitor systems.
Key Features:
? Provides an overview on the supercapacitor application of inorganic-based materials.
? Describes the fundamental aspects, key factors, advantages, and challenges of inorganic supercapacitors.
? Presents up-to-date coverage of the large, rapidly growing, and complex literature on inorganic supercapacitors.
? Surveys current applications in supercapacitor energy storage.
? Explores the new aspects of inorganic materials and next-generation supercapacitor systems.
More details
Language
English
Place of publication
London
United Kingdom
Publishing group
Taylor & Francis Ltd
Target group
Professional and scholarly
College/higher education
Professional Practice & Development
Illustrations
75 s/w Abbildungen, 47 farbige Abbildungen
47 Illustrations, color; 75 Illustrations, black and white
Dimensions
Height: 234 mm
Width: 156 mm
Thickness: 20 mm
Weight
553 gr
ISBN-13
978-1-032-23816-6 (9781032238166)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

.. Inamuddin | Rajender Boddula | Mohd Imran Ahamed
Inorganic Nanomaterials for Supercapacitor Design
Book
02/2020
1st Edition
CRC Press
€278.80
Shipment within 15-20 days

.. Inamuddin | Rajender Boddula | Mohd Imran Ahamed
Inorganic Nanomaterials for Supercapacitor Design
E-Book
12/2019
1st Edition
CRC Press
€67.49
Available for download

.. Inamuddin | Rajender Boddula | Mohd Imran Ahamed
Inorganic Nanomaterials for Supercapacitor Design
E-Book
12/2019
1st Edition
CRC Press
€67.49
Available for download
Persons
Dr. Inamuddin, Rajender Boddula, Mohd Imran Ahamed, Abdullah Mohamed Asiri
Content
Chapter 1 Niobium Based Materials for Supercapacitors Chapter 2 Zinc-Based Materials for Supercapacitors Chapter 3 Defect Engineered Inorganic Materials for Supercapacitors Chapter 4 Vanadium-Based Compounds for Supercapacitors Chapter 5 Future Prospects and Challenges of Inorganic-Based Supercapacitors Chapter 6 Tungsten Based Materials for Supercapacitors Chapter 7 Microwave-Assisted Inorganic Materials for Supercapacitors Chapter 8 Tin-Based Materials for Supercapacitor Chapter 9 Inorganic Materials-Based Next-Generation Supercapacitors Chapter 10 Synthesis Approaches of Inorganic Materials Chapter 11 Metal-Organic Frameworks Derived Materials for Supercapacitors Chapter 12 Surface Morphology Induced Inorganic Materials for Supercapacitors Chapter 13 Molybdenum Based Materials for Supercapacitors Beyond TMDs Chapter 14 Iron-Based Electrode Materials for an Efficient Supercapacitor Chapter 15 Metal-Organic Frameworks for Supercapacitors Chapter 16 Amino Acid-Assisted Inorganic Materials for Supercapacitors Chapter 17 Co-Based Materials for Supercapacitors