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首页> 外文期刊>Journal of power sources >Operando investigation of the solid electrolyte interphase mechanical and transport properties formed from vinylene carbonate and fluoroethylene carbonate
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Operando investigation of the solid electrolyte interphase mechanical and transport properties formed from vinylene carbonate and fluoroethylene carbonate

机译:碳酸亚乙烯酯和碳酸亚乙酯形成的固体电解质差异机械和运输性能的手术

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摘要

The electrolyte additives vinylene carbonate (VC) and fluoroethylene carbonate (FEC) are well known for increasing the lifetime of a Li-ion battery cell by supporting the formation of an effective solid electrolyte interphase (SEI) at the anode. In this study combined simultaneous electrochemical impedance spectroscopy (EIS) and operando electrochemical quartz crystal microbalance with dissipation monitoring (EQCM-D) are employed together with in situ gas analysis (OEMS) to study the influence of VC and FEC on the passivation process and the interphase properties at carbon-based anodes. In small quantities both additives reduce the initial interphase mass loading by 30-50%, but only VC also effectively prevents continuous side reactions and improves anode passivation significantly. VC and FEC are both reduced at potentials above 1 V vs. Li+/Li in the first cycle and change the SEI composition which causes an increase of the SEI shear storage modulus by over one order of magnitude in both cases. As a consequence, the ion diffusion coefficient and conductivity in the interphase is also significantly affected. While small quantities of VC in the initial electrolyte increase the SEI conductivity, FEC decomposition products hinder charge transport through the SEI and thus increase overall anode impedance significantly.
机译:众所周知,电解质添加剂亚甘蔗(Vc)和氟乙烯碳酸酯(FEC)通过支撑在阳极处的有效固体电解质相互作用(SEI)的形成来增加锂离子电池电池的寿命。在该研究中,结合的同时电化学阻抗光谱(EIS)和Operando电化学石英晶晶晶体微观与耗散监测(EQCM-D)一起使用,与原位气体分析(OEM)一起使用,研究VC和FEC对钝化过程的影响碳基阳极间性能。在少量中,两种添加剂将初始相互作用载荷减少30-50%,但只有VC也有效地防止连续副反应并显着提高阳极钝化。在第一周期中,VC和FEC均在1V与Li + / Li高于1V与Li + / Li的电位下降,并改变SEI组合物,这在两种情况下通过在一种数量级上通过超过一种数量级来增加SEI剪切储存模量。结果,间间离子扩散系数和电导率也受到显着影响。虽然初始电解质中的少量Vc增加了SEI电导率,但FEC分解产物通过SEI阻碍电荷输送,从而显着提高整体阳极阻抗。

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