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A study of the capacity fade of porous NiO/Ni foam as negative electrode for lithium-ion batteries

机译:多孔NiO / Ni泡沫作为锂离子电池负极的容量衰减研究

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摘要

High energy density materials such as NiO that undergoes conversion reaction hold promise for lithium (Li)-ion batteries (LIBs). However, porous NiO experiences substantial volume change due to the diffusion-induced stress during electrochemical operation, which causes mechanical fractures and morphological changes of porous NiO electrodes, leading to capacity fade through internal short circuit (ISCr). In this study, both non-destructive and destructive operations were used to visualize and quantify the origins and evolutions of the capacity fading of porous NiO/Ni foam electrodes. Results indicated that charge transfer resistance was dominant among all the internal resistances before ISCr, whereas solid electrolyte interface (SEI) resistance was dominant after ISCr of LIBs. The generation of the large amount of heat and pressure during ISCr caused the volume expansion and the formation of the micro-cracks in the struts of the porous NiO/Ni foam electrodes. Together with the electrolyte decomposition, this led to capacity fade. The results of this study provide insights for developing of NiO/Ni electrode for LIBs.
机译:发生转化反应的高能量密度材料(如NiO)有望用于锂(Li)离子电池(LIB)。但是,由于电化学操作过程中扩散引起的应力,多孔NiO的体积会发生较大变化,这会引起多孔NiO电极的机械断裂和形态变化,从而导致内部短路(ISCr)导致容量衰减。在这项研究中,非破坏性和破坏性操作均用于可视化和量化多孔NiO / Ni泡沫电极容量衰减的起源和演变。结果表明,电荷转移电阻在ISCr之前的所有内部电阻中占主导,而固体电解质界面(SEI)电阻在LIBs的ISCr之后占主导。 ISCr过程中大量热量和压力的产生导致了体积膨胀,并在多孔NiO / Ni泡沫电极的支杆中形成了微裂纹。连同电解质分解,这导致容量衰减。这项研究的结果为开发LIB的NiO / Ni电极提供了见识。

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