首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Achieving high-energy dual carbon Li-ion capacitors with unique low- and high-temperature performance from spent Li-ion batteries
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Achieving high-energy dual carbon Li-ion capacitors with unique low- and high-temperature performance from spent Li-ion batteries

机译:从锂离子电池中实现高能双碳锂离子电容,具有独特的低温和高温性能

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摘要

Graphite, an ordered layered structure, has been the dominant choice as a stable electrode material since the commercialization of lithium-ion batteries (LIBs), which could bring about a significant increase in demand for the material owing to its usage in forthcoming graphite-based energy storage devices. In this work, we propose an efficient route to reutilize recovered graphite (RG) from spent LIBs as an anode material for the fabrication of lithium-ion capacitors (LICs) after the required treatment. It was found that RG displayed a first excellent performance in a half-cell configuration, which further encouraged us to assemble a full cell using activated carbon as the cathode. Prior to the fabrication of the LIC, the RG was pre-lithiated (LiC6) to form a graphite intercalation compound to supply Li ions. The resultant dual-carbon LIC in an aprotic organic solvent delivered a maximum energy density of 185.54 W h kg(-1) at a power density of 0.319 kW kg(-1) at ambient conditions. Furthermore, different temperature performance analysis revealed that the assembled LIC presented a good cycling performance for a continuous 2000 cycles with similar to 75% capacity retention at 10 degrees C and 25 degrees C. The developed dual carbon-based LIC using recovered RG from spent LIBs offers several promising features, such as low cost and good applicability in a wide range of temperature operations as well as providing a real solution to recycle the upcoming massive quantity of spent LIBs generated by different electronic appliances.
机译:石墨是一种有序的分层结构,是由于锂离子电池(LIBS)的商业化以来作为稳定电极材料的主导选择,这可能在即将到来的基于石墨的使用情况下对材料的需求显着增加能量存储设备。在这项工作中,我们提出了一种有效的路线,以将回收的石墨(RG)从废物中重新化为所需治疗后制造锂离子电容器(LIC)的阳极材料。发现RG在半电池配置中显示出第一优异性能,进一步鼓励我们使用作为阴极的活性炭来组装全电池。在制备LIC之前,RG是预锂化(LiC6),以形成石墨嵌入化合物以供给Li离子。非质子有机溶剂中所得双碳LIC在环境条件下以0.319kW kg(-1)的功率密度,在45.54Wh kg(-1)的最大能量密度。此外,不同的温度性能分析表明,组装的LIC为连续2000个循环呈现出良好的循环性能,其连续2000个循环,其具有与10摄氏度的75%的容量保留相似,25℃。使用来自废诵的RUCH的基于RG的发达的双碳的LIC。提供多种有希望的功能,如在各种温度操作中的低成本和良好的适用性,以及提供真实的解决方案,以回收由不同电子设备产生的即将到来的大量的花费库。

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