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首页> 外文期刊>ACS Omega >New Thiourea-Based Ionic Liquid as an Electrolyte Additive to Improve Cell Safety and Enhance Electrochemical Performance in Lithium-Ion Batteries
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New Thiourea-Based Ionic Liquid as an Electrolyte Additive to Improve Cell Safety and Enhance Electrochemical Performance in Lithium-Ion Batteries

机译:基于新的硫脲的离子液体作为电解质添加剂,提高电池安全性,增强锂离子电池中的电化学性能

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摘要

Our society is critically dependent on lithium-ion batteries (LIBs) as a power source for portable electronic gadgets. One of the major problems with these batteries is the degradation of the materials inside them. In addition to the reduced cell life, building-up of these degraded products inside the cells is very detrimental to the safe operation. Herein, we report the synthesis and characterization of a novel thiourea-based room temperature ionic liquid (IL), 3-heptyl-1-(3-(3-heptyl-3-phenylthioureido)propyl)-1H -imidazole-3-ium hexafluorophosphate. Its electrochemical and thermal properties including transport phenomena have been studied. It is proposed to be used as a nominal additive to commercially used electrolytes, ethylene carbonate and di-methyl carbonate mixtures. The comparative performance characteristics of the LIBs in the presence and the absence of this IL additive have been demonstrated with a traditional lithium nickel cobalt manganese oxide cathode (NMC111), a graphite anode, and an ethylene carbonate and di-methyl carbonate (1:1, v/v) electrolyte. It is further demonstrated that use of this electrolyte additive in batteries helps to address some of the major concerns of the conventional electrolytes such as safety issues and cycling performance as well as coulombic efficiency with enhanced discharge capacities.
机译:我们的社会批判性地依赖于锂离子电池(Libs)作为便携式电子小工具的电源。这些电池的主要问题之一是它们内部材料的降低。除了降低的细胞寿命之外,细胞内部的这些降解产品的建立对安全操作非常有害。在此,我们报告了一种新的基于硫脲的室温离子液体(IL),3-庚基-1-(3-(3-庚基-3-苯基硫基)丙基)-1 H -imidazole的合成和表征-3-Ium hexafopholophate。已经研究了其电化学和热性能,包括运输现象。提出用作商业上使用的电解质,碳酸亚乙酯和碳酸二甲酯混合物的标称添加剂。用传统的锂镍钴锰氧化物阴极(NMC111),石墨阳极和碳酸亚乙酯和碳酸二甲酯(1:1)(1:1)来证明Libs在存在和不存在该IL添加剂中的比较性能特征,v / v)电解质。进一步证明了电池中的这种电解质添加剂有助于解决传统电解质的一些主要问题,例如安全问题和循环性能以及增强的放电容量的库仑效率。

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