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Recycled LiCoO2 in spent lithium-ion battery as an oxygen evolution electrocatalyst

机译:作为氧气进化电催化剂的废锂离子电池中的再生LiCoO2

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Lithium cobalt oxide (LCO) is a common cathode material in lithium ion batteries (LIBs). On the other hand, the recycling of electrode materials in LIBs has attracted serious attention due to environmental, resourcing and energy issues. In order to reduce the cost of the recycling and make full use of the transition metal in the cathode materials in LIBs, herein, we developed a simple method to convert the recycled LCO from spent LIBs into an efficient electrocatalyst for oxygen evolution reaction (OER). The long-time cycling of LCO in a LIB would lead to several structural changes in terms of chemical composition, particle size and metal valence etc. The altered structural properties of the recycled LCO with a relatively smaller particle size and activated surface may contribute to enhanced electrocatalytic activity for OER. The electrocatalytic activity improves with the increase of the cycle number of LIBs. As an electrocatalysts for OER, the recycled LCO from spent LIBs after cycling for 500 cycles can deliver a current density of 9.68 mA cm ~(?2) at 1.65 V, which is about 3.8 times that of pristine LCO (2.50 mA cm ~(?2) ).
机译:氧化锂锂(LCO)是锂离子电池(LIBS)中的常见阴极材料。另一方面,由于环境,资源和能源问题,Libs中的电极材料的回收引起了严重的关注。为了降低回收的成本并充分利用在LIBS中的阴极材料中的过渡金属,在此,我们开发了一种简单的方法,将再循环的LCO转换为从废物中转换为氧气进化反应的有效电催化剂(OER) 。 LIB中LCO的长时间循环将导致化学成分,粒度和金属价值等几种结构变化。再生LCO的改变的LCO与相对较小的粒度和活化表面的结构性能可能有助于增强OER的电催化活动。随着LIBS的循环数量的增加,电催化活性可提高。作为OER的电催化剂,循环500次循环后的废诵LIB的再循环LCO可以在1.65 V的电流密度为9.68 mA cm〜(?2),这是原始LCO的3.8倍(2.50 mA cm〜( ?2))。

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