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Tailoring the Binder of Composite Electrode for Battery Performance Optimization

机译:量身定制复合电极粘合剂以优化电池性能

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摘要

To increase electrode cycling performance in lithium batteries, most researchers generally play on the active material optimization. In this paper, it is shown that there is also a need for fundamental studies in the field of nonactive components of the composite electrode. Optimization of the environment of Li_(l.2)V_3O_8 active material within the composite electrode leads to a room-temperature cycling capacity of 280 mAh/g instead of 180 mAh/g with Bellcore-type electrode. Well performing composite electrode was achieved with efficient electronic conduction network, good carbon black/Li_(1.2) V_3O_8 interface, and total collection of active material grains. The key role of the homogeneous and efficient carbon black (CB) distribution, due to good interactions between pre-plastifed polyethylene oxide binder and CB, and optimized PEO/CB ratio, has been determined.
机译:为了提高锂电池的电极循环性能,大多数研究人员通常会进行活性材料优化。在本文中,表明在复合电极的非活性组分领域中也需要基础研究。复合电极中Li_(1.2)V_3O_8活性材料的环境优化导致室温循环容量为280 mAh / g,而不是Bellcore型电极的180 mAh / g。通过高效的电子传导网络,良好的炭黑/Li_(1.2)V_3O_8界面以及活性物质颗粒的全部收集,可以实现性能良好的复合电极。由于预塑化聚环氧乙烷粘合剂和CB之间的良好相互作用以及优化的PEO / CB比,已确定了均匀有效的炭黑(CB)分布的关键作用。

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