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Ethylene Carbonate-Free Electrolytes for Stable, Safer High-Nickel Lithium-Ion Batteries

机译:不含碳酸乙烯酯的电解质,用于稳定、更安全的高镍锂离子电池

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摘要

Ethylene carbonate (EC) is an important component in state-of-the-art electrolytes for lithium-ion batteries (LIBs). However, EC is highly susceptible to oxidation on the surface of high-nickel layered oxide cathodes, making it undesirable for next-generation high-energy-density LIBs. In this study, a simple, yet effective, EC-free electrolyte (20F1.5M-1TDI) is presented by adding 20 wt fluoroethylene carbonate (FEC) and 1 wt lithium 4,5-dicyano-2-(trifluoromethyl)imidazole (LiTDI) into 1.5 m LiPF6 in an ethyl methyl carbonate (EMC) electrolyte. The 20F1.5M-1TDI electrolyte is found to efficiently passivate the graphite anode and stabilize high-nickel cathodes by a synergistic decomposition of FEC and LiTDI. The LiNi0.9Mn0.05Al0.05O2 (NMA90)/graphite full cell with the 20F1.5M-1TDI electrolyte, therefore, exhibits an enhanced cycling stability and a suppressed voltage hysteresis growth compared to that with an EC-containing baseline electrolyte (1 m LiPF6 in EC:EMC, 3:7 in weight, with 2 wt vinyl carbonate). Advanced analytical tools, such as time-of-flight secondary ion mass spectrometry and X-ray photoelectron spectroscopy, are employed to understand the underlying working mechanism of the EC-free electrolyte. The present study clearly showcases the great potential of EC-free electrolytes as a straightforward, practical approach for LIBs with high-nickel cathodes.
机译:碳酸乙烯酯 (EC) 是最先进的锂离子电池 (LIB) 电解质中的重要成分。然而,EC极易在高镍层状氧化物阴极表面发生氧化,因此不适合下一代高能量密度锂离子电池。在这项研究中,通过将 20 wt% 氟碳酸乙烯酯 (FEC) 和 1 wt% 的 4,5-二氰基-2-(三氟甲基)咪唑锂 (LiTDI) 添加到碳酸甲乙酯 (EMC) 电解质中的 1.5 m LiPF6 中,提出了一种简单而有效的无 EC 电解质 (20F1.5M-1TDI)。研究发现,20F1.5M-1TDI电解液通过FEC和LiTDI的协同分解,有效地钝化石墨负极并稳定高镍阴极。因此,与含EC的基线电解质(1 m LiPF6,EC:EMC中为1 m,重量为3:7,碳酸乙烯酯为2 wt%)相比,采用20F1.5M-1TDI电解质的LiNi0.9Mn0.05Al0.05O2(NMA90)/石墨全电池表现出增强的循环稳定性和抑制电压滞后增长。先进的分析工具,如飞行时间二次离子质谱法和X射线光电子能谱法,被用来了解无EC电解质的潜在工作机制。本研究清楚地表明了不含EC的电解质作为高镍阴极锂离子电池的简单实用方法的巨大潜力。

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