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首页> 外文期刊>Electrochimica Acta >Ethylene bis-carbonates as telltales of SEI and electrolyte health, role of carbonate type and new additives
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Ethylene bis-carbonates as telltales of SEI and electrolyte health, role of carbonate type and new additives

机译:碳酸氢乙烯酯作为SEI和电解质健康,碳酸盐类型和新型添加剂的作用的典范

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The ethylene bis-carbonate compounds formation is responsible for the earliest change in electrolyte composition which can be one of the reasons for battery performance decay. In this study, liquid GC/MS technique is used to detect their formation in electrolytes based on solvent mixtures of EC and different linear carbonates (DMC, DEC and EMC), after the first cycle in full cells composed of synthetic graphite powder/commercial positive films. These compounds stem from linear carbonate electrochemical reduction leading to alkoxide compounds and can be quantified using a selective bicyclic boron ester Lewis acid as an electrolyte additive. Moreover, a quantitative study on ethylene bis-carbonate compounds for which the generation profile is different depending on the linear carbonate type, shows that either in batteries or in a simple chemical mixture of electrolyte and lithium alkoxide, their formation stops when it reaches a threshold concentration due to the thermodynamic equilibrium. The overall information is useful for investigating the passivation ability and the dissolution of the Solid Electrolyte Interphase (SEI) that is formed on the negative electrode material. Finally, the passivation property of the SEI freshly formed with four additives - Vinylene Carbonate (VC), Vinyl Ethylene Carbonate (VEC), Fluoro Ethylene Carbonate (FEC) and 1,3-Propane Sultone (1,3-PS)- is studied.
机译:乙撑二碳酸酯化合物的形成是电解质成分最早变化的原因,这可能是电池性能下降的原因之一。在这项研究中,在由合成石墨粉/商业正极组成的全电池中的第一个循环之后,使用液体GC / MS技术检测基于EC和不同线性碳酸盐(DMC,DEC和EMC)的溶剂混合物的电解质中电解质的形成。电影。这些化合物源于线性碳酸酯电化学还原反应生成的醇盐化合物,可以使用选择性双环硼酸酯路易斯酸作为电解质添加剂进行定量。此外,对碳酸亚乙烯酯化合物的定量研究(其生成曲线随线性碳酸盐类型的不同而不同)表明,无论是在电池中还是在电解质和醇锂的简单化学混合物中,当达到阈值时,它们的形成就会停止由于热力学平衡而产生的浓度。总体信息对于研究钝化能力和在负极材料上形成的固体电解质中间相(SEI)的溶解度很有用。最后,研究了由四种添加剂(碳酸亚乙烯酯(VC),碳酸乙烯基亚乙酯(VEC),碳酸氟亚乙酯(FEC)和1,3-丙烷磺酸内酯(1,3-PS))新近形成的SEI的钝化性能。 。

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