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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Design of S-Substituted Fluorinated Aryl Sulfonamide-Tagged (S-FAST) Anions To Enable New Solvate Ionic Liquids for Battery Applications
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Design of S-Substituted Fluorinated Aryl Sulfonamide-Tagged (S-FAST) Anions To Enable New Solvate Ionic Liquids for Battery Applications

机译:S-取代的氟化芳基磺酰胺标记(S-FAST)阴离子的设计,以实现用于电池应用的新溶剂化物离子液体

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Electrolytes with improved thermal and oxidative stability must be developed to achieve greater power and energy densities without compromising safety in modern energy storage devices. Because of their much-reduced solvent vapor pressure and expanded electrochemical windows, solvate ionic liquids (SILs) of lithium salts have recently attracted significant attention in this regard. The current palette of SILs is, however, limited to only a few suitable anions with limited chemical functionality. Guided by fundamental physical organic chemistry principles, we designed a new family of S-substituted fluorinated aryl sulfonamide-tagged anions that feature variable numbers of electronically neutral or withdrawing sulfide, sulfoxide, and sulfone substituents. Several salts of these electron deficient anions display very high electrochemical oxidative stability, good solubility, and a weakly coordinating nature that enables the synthesis of Li-based SILs with high thermal and electrochemical oxidative stability. This new family of functional, noncoordinating anions will potentially expand the scope of applications of SILs as safe electrolytes in battery devices.
机译:必须开发出具有改善的热和氧化稳定性的电解质,以实现更大的功率和能量密度,而不会影响现代能量存储装置的安全性。由于它们的溶剂蒸气压和膨胀电化学窗口,锂盐的溶剂化物离子液体(SIL)最近在这方面引起了显着的关注。然而,目前的SIL调色板仅限于具有有限的化学功能的少数合适的阴离子。以基本的物理有机化学原理为指导,我们设计了一种新的S-取代的氟化芳基磺胺酰胺标记的阴离子,其特征是可变数量的电子中性或抽出硫化物,亚砜和砜取代基。这些电子缺陷阴离子的几种盐显示出非常高的电化学氧化稳定性,良好的溶解度和弱协调性质,其能够具有高热和电化学氧化稳定性的锂基于锂的SIL。这种新的功能性,非配制阴离子将可能将SILS的应用范围扩展为电池设备中的安全电解质。

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