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Stability of aluminum in low-temperature electrolytes for Li-ion batteries

机译:锂离子电池低温电解质铝的稳定性

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The stability of aluminum at high positive potentials encountered during the charging of lithium-ion cells was investigated in solutions of lithium hexafluorophosphate and lithium methide in binary and ternary solvent mixtures of ethylenecarbonate, dimethyl carbonate, and ethyl methyl carbonate using the technique of controlled potential coulometry. It was found that a protective surface film was formed on aluminum electrodes in these solutions that protected them from further corrosion.The protective surface film was found to break down in lithium methide solutions at ~4.25 V versus a lithium reference electrode resulting in increased corrosion of aluminum electrodes at higher potentials. In contrast to lithium methide solutions, theprotective surface film formed on aluminum electrodes in lithium hexafluorophosphate solutions was found to be quite stable and did not break down at potentials up to ~5 V.
机译:在六氟磷酸锂和三元溶剂混合物中,研究了锂离子电池锂离子电池锂离子电池锂离子锂的溶液中遇到的高阳性电位的稳定性,使用受控电位库仑乙基碳酸酯,二甲基酯和碳酸甲酯乙基甲基甲基甲基甲基甲基锂溶液。发现在这些溶液中形成保护表面膜,这些溶液在这些溶液中保护它们免受进一步的腐蚀。发现保护表面膜在〜4.25 V的锂甲基溶液中分解,而导致腐蚀腐蚀增加铝电极较高潜力。与锂氨基锂溶液相比,发现在六氟磷酸锂溶液中形成的保护表面膜是相当稳定的,并且在潜在的可能性上没有达到约5V的稳定性。

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