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Comparative study of fluoroethylene carbonate and succinic anhydride as electrolyte additive for hard carbon anodes of Na-ion batteries

机译:氟代碳酸亚乙酯和琥珀酸酐作为钠离子电池硬碳阳极电解液添加剂的比较研究

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摘要

Hard carbon is the most popular anode material for Na-ion batteries, but its long-term reliability has still to be further improved. We herein examine fluoroethylene carbonate and succinic anhydride as electrolyte additives for improving the cycle performance of hard carbon anodes. For a proper evaluation, hard carbon symmetric cells as well as hard carbon/Na half-cells are employed to discriminate the influence of the additives on the hard carbon and Na electrodes. We confirm that fluoroethylene carbonate hardly improves the cyclability of hard carbon symmetric cells, but it does enable far better cycle behavior of Na metal, and thus improves the cycle performance of hard carbon/Na half-cells by mitigating the degradation of the hard carbon anodes caused by harmful products derived from Na metal. In contrast, succinic anhydride markedly improves the performance of hard carbon symmetric cells in the cycle and storage tests at 60 degrees C. The superior thermal stability of succinic anhydride is attributed to a Na2CO3/sodium alkyl carbonates-rich solid-electrolyte interphase layer formed on the hard carbon surface, as evidenced by X-ray photoelectron spectroscopy measurements.
机译:硬碳是Na离子电池最流行的负极材料,但其长期可靠性仍有待进一步提高。我们在本文中研究了氟代碳酸亚乙酯和琥珀酸酐作为电解质添加剂,以改善硬碳阳极的循环性能。为了进行适当的评估,采用硬碳对称电池以及硬碳/ Na半电池来区分添加剂对硬碳和Na电极的影响。我们证实,氟代碳酸亚乙酯几乎不会提高硬碳对称电池的循环能力,但确实能使Na金属具有更好的循环性能,从而通过减轻硬碳阳极的降解来改善硬碳/ Na半电池的循环性能。由金属钠衍生的有害产品引起。相反,琥珀酸酐在60摄氏度的循环和储存测试中显着提高了硬碳对称电池的性能。琥珀酸酐的优异热稳定性归因于在其上形成的富含Na2CO3 /碳酸钠碳酸钠的固体电解质中间相层X射线光电子能谱测量证明了硬碳表面。

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