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Anodic behavior of stainless-steel substrate in organic electrolyte solutions containing different lithium salts

机译:不锈钢基材在含不同锂盐的有机电解质溶液中的阳极行为

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摘要

The anodic behavior of austenitic stainless-steel, SUS304, as a current collector of positive electrode in lithium-ion battery/capacitor has been investigated in organic electrolyte solutions based on a mixed alkyl carbonate solvent with different lithium salts. Stable passivation characteristics were observed for the stainless-steel in the LiPF_6 solution, but pitting corrosion or active dissolution proceeded in the solutions containing other anions, BF_4~-, (CF_3SO_2)_2N~- (TFSA~-) and ClO_4~-. The mass ratios of the dissolved metal species in the solutions of LiTFSA and LiClO_4 were equivalent to that of the alloy composition, which suggests that no preferential dissolution occurs during the anodic polarization in these electrolyte solutions. An HF component formed by decomposition of PF_6~- with the contaminate water will act as an F~- source for the formation of a surface fluoride layer, that will contribute to the anodic stability of SUS304 in the LiPF_6 solution. The anodic corrosion in the LiTFSA solution was suppressed in part by mixing the PF_6 salt or adding HF in the electrolyte.
机译:在基于碳酸锂与不同锂盐混合的有机电解质溶液中,已经研究了奥氏体不锈钢SUS304作为锂离子电池/电容器中正极集流体的阳极行为。在LiPF_6溶液中观察到不锈钢具有稳定的钝化特性,但在含有其他阴离子BF_4〜-,(CF_3SO_2)_2N〜-(TFSA〜-)和ClO_4〜-的溶液中出现点蚀或活性溶解。 LiTFSA和LiClO_4溶液中溶解的金属物质的质量比与合金成分的质量比相等,这表明在这些电解质溶液的阳极极化过程中不会发生优先溶解。由PF_6-污染的水分解而形成的HF组分将作为F-源,形成表面氟化物层,这将有助于SUS304在LiPF_6溶液中的阳极稳定性。通过混合PF_6盐或在电解液中添加HF,可以部分地抑制LiTFSA溶液中的阳极腐蚀。

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