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Performance Improvement of Liquid Phase Plasma Processed Carbon Blacks Electrode in Lithium Ion Battery Applications

机译:液相等离子体处理炭黑电极在锂离子电池中的性能改进

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Cyclic stability of carbon blacks as an anode electrode in lithium ion batteries was studied using commercial (SP & KB) and synthesized (SC) ones. SC was processed by liquid phase plasma process. The cyclic stability was found to be affected with the presence of solid electrolyte interface (SEI). Unlike the commercial carbon blacks in which SEI formed at early stage of charge-discharge cycles, SC showed a gradual formation of SEI with the cycles. The SEI formation was confirmed by the trace of resistance changes with the impedance measurements. SP was observed to have the best charge-discharge cyclic stability. Meanwhile, the capacity of SC was gradually decreased with the cycle until the formation of SEI even though it had higher capacity than the commercial ones through the measurement cycles of up to 50. The cyclic stability of SC carbon blacks was greatly improved by mixing with SP with a slight sacrifice of capacity.
机译:使用市售(SP&KB)和合成(SC)的碳黑研究了炭黑作为锂离子电池阳极电极的循环稳定性。 SC通过液相等离子体工艺处理。发现循环稳定性受固体电解质界面(SEI)的影响。与在充放电循环的早期形成SEI的商业炭黑不同,SC随循环显示SEI逐渐形成。 SEI的形成通过阻抗测量随电阻变化的轨迹得以确认。观察到SP具有最佳的充放电循环稳定性。同时,SC的容量随着循环的增加而逐渐降低,直到形成SEI为止,尽管在高达50次的测量循环中,其容量都比商业化的高。SC炭黑与SP混合可以大大提高其循环稳定性。略有牺牲的能力。

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