Nanowire Energy Storage Devices: Synthesis, Characterization and Applications 1st edition by Liqiang Mai – Ebook PDF Instant Download/DeliveryISBN: 3527832475 9783527832477
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ISBN-10 : 3527832475
ISBN-13 : 9783527832477
Author: Liqiang Mai
Nanowire Energy Storage Devices focuses on the energy storage applications of nanowires, covering the synthesis and principles of nanowire electrode materials and their characterization, and performance control. Major parts of the book are devoted to the applications of nanowire-based ion batteries, high energy batteries, supercapacitors, micro-nano energy storage devices, and flexible energy storage devices. The book also addresses global energy challenges by explaining how nanowires allow for the design and fabrication of devices that provide sustainable energy generation.
Nanowire Energy Storage Devices: Synthesis, Characterization and Applications 1st Table of contents:
1 Nanowire Energy Storage Devices: Synthesis, Characterization, and Applications
1.1 Introduction
References
2 Fundamentals of Nanowire Energy Storage
2.1 Physical and Chemical Properties of Nanowires
2.2 Thermodynamics and Kinetics of Nanowires Electrode Materials
2.3 Basic Performance Parameters of Nanowires Electrochemical Energy Storage Devices
2.4 Interfacial Properties of Nanowires Electrode Materials
2.5 Optimization Mechanism of Electrochemical Properties of Nanowires Electrode Materials
2.6 Theoretical Calculation of Nanowires Electrode Materials
2.7 Summary and Outlook
References
3 Design and Synthesis of Nanowires
3.1 Conventional Nanowires
3.2 Porous Nanowires
3.3 Hierarchical Nanowires
3.4 Heterogeneous Nanowires
3.5 Hollow Nanowires
3.6 Nanowire Arrays
3.7 Summary and Outlook
References
4 Nanowires for In Situ Characterization
4.1 In Situ Electron Microscopy Characterization
4.2 In Situ Spectroscopy Characterization
4.3 In Situ Characterization of Nanowire Devices
4.4 Other In Situ Characterization
4.5 Summary and Outlook
References
5 Nanowires for Lithium‐ion Batteries
5.1 Electrochemistry, Advantages, and Issues of LIBs Batteries
5.2 Unique Characteristic of Nanowires for LIBs
5.3 Nanowires as Anodes in LIBs
5.4 Nanowires as Cathodes in LIBs
5.5 Nanowires‐Based Separators in LIBs
5.6 Nanowires‐Based Solid‐State Electrolytes in LIBs
5.7 Nanowires‐Based Electrodes for Flexible LIBs
5.8 Summary and Outlook
References
6 Nanowires for Sodium‐ion Batteries
6.1 Advantages and Challenges of Sodium‐ion Batteries
6.2 Nanowires as Cathodes in Sodium‐ion Batteries
6.3 Nanowires as Anodes in Sodium‐ion Batteries
6.4 Summary
References
7 Application of Nanowire Materials in Metal‐Chalcogenide Battery
7.1 Lithium–Sulfur Battery
7.2 Sodium–Sulfur Battery and Magnesium–Sulfur Battery
7.3 Lithium–Selenium Battery
7.4 Summary and Outlook
References
8 Application of Nanowires in Supercapacitors
8.1 Nanowire Electrode Material for Electrochemical Double‐Layer Capacitor
8.2 Nanowire Electrode Materials for Pseudocapacitive Supercapacitors
8.3 Nanowire Electrode Materials of Hybrid Supercapacitors
8.4 Summary and Outlook
References
9 Nanowires for Multivalent‐ion Batteries
9.1 Nanowires for Magnesium‐Ion Battery
9.2 Nanowires for Calcium‐Ion Batteries
9.3 Nanowires for Zinc‐Ion Batteries
9.4 Nanowires for Aluminum Ion Batteries
9.5 Summary and Outlook
References
10 Conclusion and Outlook
10.1 Structure Design and Performance Optimization of 1D Nanomaterials
10.2 Advanced Characterization Methods for 1D Nanomaterials
10.3 Applications and Challenges of Nanowire Energy Storage Devices
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Nanowire Energy,Storage Devices,Synthesis,Characterization,Applications,Liqiang Mai