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Effect of Cathode Slurry Composition on the Electrochemical Properties of Li-ion Batteries

机译:阴极浆料组合物对锂离子电池电化学性能的影响

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The performance difference between commercial and laboratory scale cells remains a problem to be solved. Different way of battery electrode preparation is considered to be the main reason underlying various battery performance. In this work, the effect of slurry composition on electrochemical properties of Li-ion batteries is reported. Slurry preparation with various compositions of LiFePO_4 active material (76-88%), PVdF binder (6-12%) and Super P Carbon conductive additive (6-12%) has been studied. Charge-discharge curves and capacity fade of electrodes are also investigated. Selected electrodes were pressed in order to see the effect of pressing on the final performance. Results showed that varying PVdF and carbon content mainly effects charge-discharge characteristics. For unpressed samples, higher amount of PVdF and carbon could result higher maximum specific capacity and lower internal resistance during lithiation and delithiation of positive electrode. Pressing reduces the distance between slurry particles, which enhances the conductivity of the prepared cell.
机译:商业和实验室比例细胞之间的性能差异仍然是一个问题。不同的电池电极准备方式被认为是各种电池性能的主要原因。在这项工作中,报道了浆料组合物对锂离子电池电化学性能的影响。研究了浆料制备,具有各种LiFepo_4活性物质(76-88%),PVDF粘合剂(6-12%)和超级P碳导电添加剂(6-12%)。还研究了充放电曲线和电极的容量衰落。按下所选电极以便看到压制最终性能的效果。结果表明,不同的PVDF和碳含量主要效果电荷放电特性。对于未抑制的样品,较高量的PVDF和碳可能导致较高的最大特定容量和较低的锂化期间的内阻和正极的脱发。压制降低了浆料颗粒之间的距离,这提高了制备的细胞的电导率。

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