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Lithium-Titanate as a Negative Electrode for Lithium-Ion Batteries

机译:锂钛酸盐作为锂离子电池的负极

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The safety issue of lithium-ion batteries is current important research area. In recent years, the trend is to use higher capacity batteries allowing user to store more energy, to extract it at a higher rate, and to extend the application to new fields such as electrical vehicles propulsion, and smart grid. The comprehension to the all safety aspects of these large energy storage batteries lies extensive demands for battery designers and manufacturers. The failure of lithium-ion battery is accompany by thermal runaway and the venting of toxic and highly flammable gases. That can occur due to exposure battery to excessive temperatures, external shorts, high discharge rate, faulty wiring, or due to internal shorts caused by cell defects. These effects depends on the materials from which the batter yis made of. This paper deals with negative electrode materials and electrolytes for lithium-ion batteries with enhanced higher fire safety.
机译:锂离子电池的安全问题是目前的重要研究区。 近年来,趋势是利用更高容量的电池允许用户存储更多能量,以更高的速度提取它,并将应用扩展到新的领域,例如电动车辆推进和智能电网。 对这些大型储能电池的所有安全方面的理解是对电池设计师和制造商的广泛需求。 锂离子电池的失效通过热失控和毒性和高度易燃气体的通风伴随。 这可能发生由于曝光电池过度温度,外部短裤,高放电速率,故障布线,或由于细胞缺陷引起的内部短路而导致。 这些效果取决于面糊YIS的材料。 本文涉及锂离子电池的负电极材料和电解质,具有提高的火灾安全性。

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