systematically summarizes and condenses the development, directions, potential and core issues of sodium-ion batteries
Xiaobo Ji, Associate Dean; Professor and Doctoral Supervisor of Central South University. He received a Ph.D. from Oxford University and later did post-doctoral research at MIT. His main research fields include new energy materials and devices and advanced energy storage technology. He has published more than 280 SCI papers in international journals such as Advanced Materials, Angewandte Chemie, and has been cited more than 16,000 times, with an H index of 68. 52 Chinese invention patents have been authorized to him.
1. INTRODUCTION
2. CHARACTERISTIC OF SIBS 2.1 Basic Features 2.2 Working Principle 2.3 Concepts and Equations 2.4 Structural Composition
3. CATHODE MATERIALS OF SIBS 3.1 Polyanion Cathode 3.2 Oxide Cathode 3.3 Prussian Blue and their Analogues 3.4 Perovskite Transition Metal Fluorides 3.5 Organic Cathode
4. ANODE MATERIALS OF SODIUM ION BATTERIES 4.1 Carbon-based Anode 4.2 Titanium-based Anode 4.3 Conversion Anode 4.4 Metal/ Alloy Anode 4.5 Organic Cathode 4.6 Other Anode
5. ELECTROLYTE, SEPARATOR, BINDER AND OTHER DEVICES OF SIBS 5.1 Organic Liquid Electrolytes 5.2 Solid State Electrolytes 5.3 Separator 5.4 Binder 5.5 Conductive Agent 5.6 Current Collector
6. ADVANCED CHARACTERIZATION TECHNIQUES AND THEORETICAL CALCULATION 6.1 Electron Microscope 6.2 Spectrum Analysis 6.3 Synchrotron Radiation X-ray Diffraction Technique 6.4 Solid-state Nuclear Magnetic Resonance Spectroscopy 6.5 Electrochemical Test Techniques 6.6 Other Characterization Techniques 6.7 Theoretical Calculation
7. PRACTICAL APPLICATION OF SIBS 7.1 Structure Design 7.2 Test Maintenance and Failure Analysis 7.3 Cost Estimation 7.4 Commercial Application and Future Perspectives
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