Carbon Nanomaterials for Electrochemical Energy Technologies Fundamentals and Applications 1st Edition by Shuhui Sun, Xueliang Sun, Zhongwei Chen, Yuyu Liu, David P Wilkinson, Jiujun Zhang – Ebook PDF Instant Download/Delivery: 1351648047, 9781351648042
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ISBN 10: 1351648047
ISBN 13: 9781351648042
Author: Shuhui Sun, Xueliang Sun, Zhongwei Chen, Yuyu Liu, David P Wilkinson, Jiujun Zhang
This book offers comprehensive coverage of carbon-based nanomaterials and electrochemical energy conversion and storage technologies such as batteries, fuel cells, supercapacitors, and hydrogen generation and storage, as well as the latest material and new technology development. It addresses a variety of topics such as electrochemical processes, materials, components, assembly and manufacturing, degradation mechanisms, challenges, and strategies. With in-depth discussions ranging from electrochemistry fundamentals to engineering components and applied devices, this all-inclusive reference offers a broad view of various carbon nanomaterials and technologies for electrochemical energy conversion and storage devices.
Carbon Nanomaterials for Electrochemical Energy Technologies Fundamentals and Applications 1st Table of contents:
Chapter 1 Carbon Nanomaterials for Li-Ion Batteries
1.1 Overview of Li-Ion Batteries
1.2 Carbon Nanomaterials for LIBs
1.3 Summary and Outlook
References
Chapter 2 Carbon Nanomaterials for Li–Sulfur Batteries
2.1 Overview of Li–Sulfur Batteries
2.2 Carbon Nanomaterials for Li–S Batteries
References
Chapter 3 Carbon Nanomaterials for Na-Ion Batteries
3.1 Overview 0f Na-Ion Batteries
3.2 Carbon Nanomaterials for Nibs
3.3 Conclusion and Outlook
References
Chapter 4 Carbon Nanomaterials for Metal—Air Batteries
4.1 Introduction
4.2 Electrochemical Reactions of Air Electrode
4.3 Carbon Materials for Metal–Air Batteries
4.4 Summary and Outlook
References
Chapter 5 The New Graphene Family Materials: Material Synthesis and Applications in Lithium-Ion Batteries.
5.1 Introduction
5.2 The Graphene Family Materials and Their Synthesis Strategy
5.3 Application in Lithium-ion Batteries
5.4 Conclusions and Future Outlook
References
Chapter 6 Carbon Nanomaterials for Supercapacitors
6.1 Overview of Supercapacitors
6.2 Carbon Nanomaterials for Scs
6.3 Conclusion and Outlook
References
Chapter 7 Carbon Nanomaterials for Li–O2 Batteries
7.1 Introduction
7.2 The Li–O2 battery System
7.3 Carbon nanomaterials for Li–O2 air electrode
7.4 Conclusion and Perspective
References
Chapter 8 Carbon Nanomaterials for Na–O2 Batteries
8.1 Introduction
8.2 Understanding of Na–O2 Batteries
8.3 Carbon Nanomaterials for Na–O2 Batteries
8.4 Conclusion and Perspectives
References
Chapter 9 Nitrogen-Doped Carbon Materials for Oxygen Reduction in PEM Fuel Cells
9.1 Introduction
9.2 Synthesis of Nitrogen-Doped Carbon
9.3 Nitrogen-Doped Carbon Nanotubes (NCNTs) For Oxygen Reduction Reaction (ORR)
9.4 Nitrogen-Doped Graphene for ORR
9.5 The Composites of NCNTS and NG for ORR
9.6 Tests in PEMFCS
9.7 Conclusion and Perspectives
References
Chapter 10 New Class of Graphene Materials for Fuel Cells
10.1 Introduction
10.2 The Synthetic Strategy of Graphene Family Materials
10.3 Graphene Family Materials for Fuel Cells
10.4 Conclusions and Future Outlook
References
Chapter 11 Applications of Carbon Materials in Membranes for Fuel Cells
11.1 Challenges and Prospects for Carbon Materials in Fuel Cells
References
Chapter 12 Carbon Nanomaterials in Electrolysis and Hydrogen
12.1 Carbon Materials for Electrolyzers
12.2 Carbon Materials for Photoelectroreduction of H2O And Co2 for Production of H2 and Low-Carbon Fuels/Useful Chemicals
12.3 Carbon Materials for Electrochemical Co2 Reduction for Production of Low-Carbon Chemicals
12.4 Chapter Summary
References
Chapter 13 Graphene-Based Sensors
13.1 Introduction
13.2 Properties and Synthesis of Graphene
13.3 Outlook and Future Perspective
13.4 Conclusions
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Shuhui Sun,Xueliang Sun,Zhongwei Chen,Yuyu Liu,David P Wilkinson,Jiujun Zhang,Carbon Nanomaterials,Electrochemical Energy,Technologies Fundamentals,Applications