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首页> 外文期刊>Journal of power sources >Combining composition graded positive and negative electrodes for higher performance Li-ion batteries
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Combining composition graded positive and negative electrodes for higher performance Li-ion batteries

机译:组合成分分级的正极和负极,可用于高性能锂离子电池

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摘要

Homogeneous electrode structures used in Li-ion batteries (LIB) lead to inhomogeneous active material utilization and gradients of overpotential and Li-ion concentration at the cell-scale, which are detrimental for both capacity retention at high charge-discharge rates and for battery life-time. To account for these gradients, we demonstrate that heterogenous electrode structures with engineered gradients in material distribution can improve LIB C-rate and long-term cycling performance when compared with conventional uniform electrodes in LiFePO4 parallel to Li4Ti5O12 full-cell LIBs. An improvement in C-rate performance of > 120% and a capacity degradation rate reduced to <50% over uniform electrode cells was achieved at 1C, and graded cells showed a dramatically improved power-energy density balance. Graded electrodes had a relatively low cell polarization that became more marked as the C-rate increased. Cycled graded electrodes had reduced solid electrolyte interphase (SEI) formation when compared with uniform electrodes according to XPS surface analysis, which was consistent with their reduced charge transfer resistance measured by impedance spectroscopy. The origin of the improved performance arises from a more uniform overpotential distribution across the thickness of the graded heteroelectrodes.
机译:锂离子电池(LIB)中使用的均质电极结构会导致不均匀的活性物质利用以及电池规模的过电势和锂离子浓度梯度,这不利于高充放电速率下的容量保持和电池寿命-时间。为了解决这些梯度问题,我们证明了与常规均匀电极在平行于Li4Ti5O12全电池LIB的LiFePO4中相比,材料分布中具有工程梯度的异质电极结构可以提高LIB C速率和长期循环性能。在1C时,与均质电极电池相比,C速率性能提高了120%以上,容量降解率降低到<50%,分级电池显示出了显着改善的功率-能量密度平衡。渐变电极具有相对较低的电池极化,随着C速率的增加,极化变得更加明显。与根据XPS表面分析的均匀电极相比,循环梯度电极具有减少的固体电解质中间相(SEI)形成,这与通过阻抗谱测量的减少的电荷转移电阻相一致。改善性能的根源来自于梯度异质电极厚度上更均匀的过电势分布。

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