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·Advanced Lithium-Ion Battery Materials (Anode, Cathode, and Electrolyte) ·Solid-State Electrolytes and Solid-State Battery Technologies ·Sodium-Ion, Potassium-Ion, and Zinc-Ion Battery Systems ·Lithium-Sulfur and Lithium-Air Battery Technologies ·Organic and Polymer Electrode Materials ·High-Entropy Materials for Energy Storage Applications ·Interface Chemistry and Electrode-Electrolyte Engineering ·In-Situ Characterization and Operando Analysis of Battery Materials ·Computational Materials Science and AI/ML for Battery Materials Discovery ·Sustainable and Low-Cost Battery Material Synthesis ·Nano-Engineered and 2D Materials for Advanced Energy Storage ·Rare-Earth-Free and Abundant-Element Battery Technologies
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·Battery Management Systems (BMS) ·Battery Thermal Management and Advanced Cooling Technologies ·Battery Degradation Mechanisms, Lifetime Prediction, and Health Diagnostics ·Thermal Runaway Early Warning and Battery Safety Protection ·Grid-Scale Energy Storage Systems for Renewable Integration and Frequency Regulation ·Microgrid Energy Storage Solutions and Off-Grid Applications ·Integration of Energy Storage with Solar, Wind, and Hybrid Renewable Systems ·Pumped Storage, Compressed Air, and Flywheel Energy Storage Technologies ·Second-Life Application and Recycling of Retired Batteries ·Energy Storage Economics, Market Mechanisms, and Policy Frameworks ·Standardization, Testing, and Certification for Energy Storage Systems ·Digital Twins and Intelligent Operation & Maintenance of Energy Storage Plants
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