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LiFePO4-Graphene Composites as High-Performance Cathodes for Lithium-Ion Batteries: The Impact of Size and Morphology of Graphene

机译:LiFePO4-石墨烯复合材料作为锂离子电池的高性能阴极:石墨烯的尺寸和形态的影响

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摘要

In this work, we investigated three types of graphene (i.e., home-made G, G V4, and G V20) with different size and morphology, as additives to a lithium iron phosphate (LFP) cathode for the lithium-ion battery. Both the LFP and the two types of graphene (G V4 and G V20) were sourced from industrial, large-volume manufacturers, enabling cathode production at low cost. The use of wrinkled and/or large pieces of a graphene matrix shows promising electrochemical performance when used as an additive to the LFP, which indicates that the features of large and curved graphene pieces enable construction of a more effective conducting network to realize the full potential of the active materials. Specifically, compared to pristine LFP, the LFP/G, LFP/G V20, and LFP/G V4 show up to a 9.2%, 6.9%, and 4.6% increase, respectively, in a capacity at 1 C. Furthermore, the LFP combined with graphene exhibits a better rate performance than tested with two different charge/discharge modes. Moreover, from the economic and electrochemical performance view point, we also demonstrated that 1% of graphene content is optimized no matter the capacity calculated, based on the LFP/graphene composite or pure LFP.
机译:在这项工作中,我们研究了三种不同尺寸和形态的石墨烯(即自制的G,G V4和G V20),作为锂离子电池磷酸铁锂(LFP)阴极的添加剂。 LFP和两种类型的石墨烯(G V4和G V20)均来自工业化的大批量制造商,因此能够以低成本生产阴极。当起皱和/或大块石墨烯基体用作LFP的添加剂时,其电化学性能表现出良好的前景,这表明大块和弯曲石墨烯块的特征使得能够构建更有效的导电网络以实现全部电势活性材料。具体而言,与原始LFP相比,LFP / G,LFP / G V20和LFP / G V4在1 C时的容量分别增加了9.2%,6.9%和4.6%。与使用两种不同的充电/放电模式进行测试相比,与石墨烯结合使用具有更好的速率性能。此外,从经济和电化学性能的角度来看,我们还证明了无论是基于LFP /石墨烯复合材料还是纯LFP计算出的容量,石墨烯含量都可以优化1%。

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