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• Why safety? • Origins of safety concerns • Thermal runaway process: 3 stages • Materials with improved battery safety • Materials to solve problems in 3 stages
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• Introduction of TiO2 • Chemistry of TiO2 • Molecular structure and Li insertion • Synthesis and modification methods • Several literature examples
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• Introduction of Tin • Chemistry of Tin • Molecular structure and Li insertion • Synthesis and modification methods • One literature example
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• Introduction of silicon • Chemistry of silicon • Reaction mechanisms of silicon anode • Problems • Synthesis and modification methods • One literature example
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1、掌握组合逻辑电路的分析和设计方法。 2、熟悉编码器、译码器、多路选择器、数值比较器、加法器等典型中规模组合逻辑器件的逻辑功能与应用
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• Overview of anode materials • Introduction of graphite • Chemistry of graphite • Molecular structure and Li insertion • Synthesis and modification methods • One literature example
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第二章半导体基本器件 2.1半导体二极管 PN结的单向导电原理,二极管的伏安特性 2.2半导体三极管 (1)三极管输出特性中的截止区、放大区和饱和区等概念。 (2三极管共发射极电流放大系数的概念 (3)三极管开关电路工作状态的分析方法 2.3MOS场效应管 (1)MOS场效应管的分类及符号 (2)增强型NMOS管的特性曲线
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• Discovery • Chemistry of LiFePO4 • Molecular structure and Li diffusion • Advantages and disadvantages • Synthesis and modification methods • One literature example
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• Lithium-metal batteries • Safety problem • Lithium-ion batteries • Components, working mechanism • Cathode materials: LiFePO4 , Li-Mn-O
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• Important Terms of batteries • Why lithium batteries? • Necessity, and advantage • Different types of lithium batteries • Primary and secondary/rechargeable • Working mechanism • How they store charges
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