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首页> 外文期刊>Electrochimica Acta >0.5Co 0.2Mn 0.3O 2 cathode material from spent lithium-ion batteries]]>
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0.5Co 0.2Mn 0.3O 2 cathode material from spent lithium-ion batteries]]>

机译:<![CDATA [CDATA [LINE的再生 0.5 CE:INF PLACE =“POST”> 0.2 MN 0.3 O 2 来自锂离子电池的阴极材料]]]>

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摘要

Traditional approaches to recycle and regenerate spent lithium-ion batteries by leaching are polluted and complicated. In this study, a green and simple technique has been provided to regenerate spent LiNi0.5Co0.2Mn0.3O2cathode material, besides, the regenerated mechanisms are investigated. Studies indicate that lost lithium ions in material lattice are replenished by added lithium, meanwhile, insulting impurities on particle surface remove basically, cracked and broken particles disappear during the regeneration process. Electrochemical tests demonstrate that the performances of regenerated material improve significantly. The discharge capacities are 164.6?mAh g?1at 0.1?C rate and 147?mAh g?1at 1?C rate, respectively. They still could deliver a discharge capacity of 131?mAh g-1 with a high capacity retention rate of 89.12% after 100 cycles at 1?C, which can be considered as a preferable electrical energy storage system. The improved electrochemical performances prove a facial and effective regeneration process.
机译:通过浸出回收和再生锂离子电池的传统方法被污染和复杂。在本研究中,还提供了一种绿色和简单的技术来再生LINI0.5CO0.2MN0.3O2Cathode材料,还研究了再生机制。研究表明,通过加入锂补充物质晶格中损失的锂离子,同时,在再生过程中,颗粒表面的颗粒表面腐蚀性杂质消除,在再生过程中消失。电化学试验表明再生材料的性能显着提高。放电容量为164.6?MAH G?1AT 0.1?C速率和147?MAH G?1AT 1?C速率。它们仍然可以提供131?MAH G-1的放电容量,高容量保持率为89.12%,在1℃下100次循环后,这可以被认为是优选的电能存储系统。改善的电化学性能证明了面部和有效的再生过程。

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