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Investigation of Fluoroethylene Carbonate Effects on Tin-based Lithium-Ion Battery Electrodes

机译:碳酸氟乙烯酯对锡基锂离子电池电极影响的研究

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Electroless plating of tin on copper foil (2-D) and foams (3-D) was used to create carbon- and binder-free thin films for solid electrolyte interphase (SEI) property investigation. When electrochemically cycled vs lithium metal in coin cells, the foam electrodes exhibited better cycling performance than the planar electrodes due to electrode curvature. The effect of the additive/cosolvent fluoroethylene carbonate (FEC) was found to drastically improve the capacity retention and Coulombic efficiency of the cells. The additive amount of 2% FEC is enough to derive the benefits in the cells at a slow (C/9) cycling rate. The interfacial properties of Sn thin film electrodes in electrolyte with/without FEC additive were investigated using in situ electrochemical quartz crystal microbalance with dissipation (EQCM-D). The processes of the decomposition of the electrolyte on the electrode surface and Li alloying/dealloying with Sn were characterized quantitatively by surface mass change at the molecular level. FEC-containing electrolytes deposited less than electrolyte without FEC on the initial reduction sweep, yet increased the overall thickness/mass of SEI after several cyclic voltammetry cycles. EQCM-D studies demonstrate that the mass accumulated per mole of electrons (mpe) was varied in different voltage ranges, which reveals that the reduction products of the electrolyte with/without FEC are different.
机译:化学镀锡在铜箔(2-D)和泡沫(3-D)上用于创建无碳和无粘合剂的薄膜,用于固体电解质相间(SEI)性能研究。当与硬币电池中的锂金属进行电化学循环相比,泡沫电极由于电极曲率而比平面电极表现出更好的循环性能。发现添加剂/助溶剂氟代碳酸亚乙酯(FEC)的作用大大改善了电池的容量保持率和库仑效率。 2%FEC的添加量足以在慢速(C / 9)循环速率下获得电池的益处。使用带耗散的原位电化学石英晶体微天平(EQCM-D),研究了添加/不添加FEC添加剂的电解质中锡薄膜电极的界面特性。通过在分子水平上的表面质量变化来定量地表征电解质在电极表面上的分解以及Li与Sn合金化/脱合金的过程。在最初的还原扫描中,含FEC的电解质比没有FEC的电解质沉积少,但经过几个循环伏安循环后,却增加了SEI的总厚度/质量。 EQCM-D研究表明,每摩尔电子积累的质量(mpe)在不同的电压范围内变化,这表明带有/不带有FEC的电解质的还原产物是不同的。

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