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首页> 外文期刊>Chemistry: A European journal >Cyclic quaternary ammonium ionic liquids with perfluoroalkyltrifluoroborates: Synthesis, characterization, and properties
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Cyclic quaternary ammonium ionic liquids with perfluoroalkyltrifluoroborates: Synthesis, characterization, and properties

机译:具有全氟烷基三氟硼酸酯的环状季铵离子液体:合成,表征和性质

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摘要

New cyclic quaternary ammonium salts, composed of N-alkyl(alkyl ether)-N-methylpyrrolidinium, -oxazolidinium, -piperidinium, or -morpholinium cations (alkyl=nC(4)H(9), alkyl ether=CH3OCH2, CH3OCH2CH2) and a perfluoroalkyltrifluoroborate anion ([RFBF3](-), R-F=CF3, C2F5, nC(3)F(7), nC(4)F(9)), were synthesized and characterized. Most of these salts are liquids at room temperature. The key properties of these salts-phase transitions, thermal stability, density, viscosity, conductivity, and electrochemical windows-were measured and compared to those of their corresponding [BF4](-) and [(CF3SO2)(2)N](-) salts. The structural effect on all the above properties was intensively studied in terms of the identity of the cation and anion, variation of the side chain in the cation (i.e., alkyl versus alkyl ether), and change in the length of the perfluoroalkyl group (R-F) in the [RFBF3](-) ion. ne reduction of Li+ ions and reoxidation of Li metal took place in pure N-butyl-N-methyl-pyrrolidinium pentafluoroethyltrifluoroborate as the supporting electrolyte. Such comprehensive studies enhance the knowledge necessary to design and optimize ionic liquids for many applications, including electrolytes. Some of these new salts show desirable properties, including low melting points, high thermal stabilities, low viscosities, high conductivities, and wide electrochemical windows, and may thus be potential candidates for use as electrolytes in high-energy storage devices. In addition, many salts are ionic plastic crystals.
机译:由N-烷基(烷基醚)-N-甲基吡咯烷鎓,-恶唑烷鎓,-哌啶鎓或-吗啉鎓阳离子(烷基= nC(4)H(9),烷基醚= CH3OCH2,CH3OCH2CH2)和组成的新的环状季铵盐合成并表征了全氟烷基三氟硼酸根阴离子([RFBF3](-),RF = CF3,C2F5,nC(3)F(7),nC(4)F(9))。这些盐大多数在室温下为液体。测量了这些盐的相变,热稳定性,密度,粘度,电导率和电化学窗口的关键特性,并将其与相应的[BF4](-)和[(CF3SO2)(2)N](- )盐。就阳离子和阴离子的身份,阳离子侧链的变化(即烷基相对于烷基醚)以及全氟烷基长度的变化(RF),对上述所有性质的结构效应进行了深入研究。 )在[RFBF3](-)离子中。在纯的N-丁基-N-甲基-吡咯烷鎓五氟乙基三氟硼酸盐作为支持电解质中,发生了Li +离子的还原和锂金属的再氧化。如此全面的研究增强了为许多应用(包括电解质)设计和优化离子液体所需的知识。这些新盐中的某些显示出所需的特性,包括低熔点,高热稳定性,低粘度,高电导率和宽的电化学窗口,因此可能成为在高能存储设备中用作电解质的潜在候选者。另外,许多盐是离子塑料晶体。

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