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首页> 外文期刊>Journal of power sources >From coin cells to 400 mAh pouch cells: Enhancing performance of high-capacity lithium-ion cells via modifications in electrode constitution and fabrication
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From coin cells to 400 mAh pouch cells: Enhancing performance of high-capacity lithium-ion cells via modifications in electrode constitution and fabrication

机译:从纽扣电池到400 mAh袋式电池:通过修改电极的结构和制造方式来提高大容量锂离子电池的性能

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摘要

In this article we describe efforts to improve performance and cycle life of cells containing Li_(1.2)Ni_(0.15)Mn_(0.55)Co_(0.1)O_2-based positive and graphite-based negative electrodes. Initial work to identify high-performing materials, compositions, fabrication variables, and cycling conditions is conducted in coin cells. The resulting information is then used for the preparation of double-sided electrodes, assembly of pouch cells, and electrochemical testing. We report the cycling performance of cells with electrodes prepared under various conditions. Our data indicate that cells with positive electrodes containing 92 wt.% Li1.2Nio.15Mno.55Coo.102, 4 wt.% carbons (no graphite), and 4 wt.% PVdF (92-4-4) show ~20% capacity fade after 1000 cycles in the 2.5-4.4 V range, significantly better than our baseline cells that show the same fade after only 450 cycles. Our analyses indicate that the major contributors to cell energy fade are capacity loss and impedance rise. Therefore incorporating approaches that minimize capacity fade and impedance rise, such as electrode coatings and electrolyte additives, can significantly enhance calendar and cycle life of this promising cell chemistry.
机译:在本文中,我们描述了为改善含Li_(1.2)Ni_(0.15)Mn_(0.55)Co_(0.1)O_2正极和石墨负极的电池的性能和循环寿命所做的努力。识别高性能材料,成分,制造变量和循环条件的初始工作是在纽扣电池中进行的。然后将所得信息用于双面电极的制备,袋式电池的组装以及电化学测试。我们报告了在各种条件下制备的带有电极的电池的循环性能。我们的数据表明,带有正极的电池中含有92 wt。%的Li1.2Nio.15Mno.55Coo.102、4 wt。%的碳(无石墨)和4 wt。%的PVdF(92-4-4)显示为〜20%容量在2.5-4.4 V范围内经过1000次循环后衰减,明显好于我们的基准电池,仅在450次循环后显示相同的衰减。我们的分析表明,导致电池能量衰减的主要因素是容量损失和阻抗上升。因此,采用最小化容量衰减和阻抗升高的方法(例如电极涂层和电解质添加剂)可以显着提高这种有前途的电池化学的日历和循环寿命。

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