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Triglyme-based electrolyte for sodium-ion and sodium-sulfur batteries

机译:钠离子和硫磺电池的基于Triglyme的电解质

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摘要

Herein, we investigate a lowly flammable electrolyte formed by dissolving sodium trifluoromethanesulfonate (NaCF3SO3) salt in triethylene glycol dimethyl ether (TREGDME) solvent as suitable medium for application in Na-ion and Na/S cells. The study, performed by using various electrochemical techniques, including impedance spectroscopy, voltammetry, and galvanostatic cycling, indicates for the solution high ionic conductivity and sodium transference number (t(+)), suitable stability window, very low electrode/electrolyte interphase resistance and sodium stripping/deposition overvoltage. Direct exposition to flame reveals the remarkable safety of the solution due to missing fire evolution under the adopted experimental setup. The solution is further investigated in sodium cells using various electrodes, i.e., mesocarbon microbeads (MCMBs), tin-carbon (Sn-C), and sulfur-multiwalled carbon nanotubes (S-MWCNTs). The results show suitable cycling performances, with stable reversible capacity ranging from 90mAhg(-1) for MCMB to 130 mAhg(-1) for Sn-C, and to 250mAhg(-1) for S-MWCNTs, thus suggesting the electrolyte as promising candidate for application in sustainable sodium-ion and sodium-sulfur batteries.
机译:在此,我们研究通过将三氟甲磺酸钠(NaCF 3 SO 3)盐溶解在三甘醇二甲醚(Tragdme)溶剂中作为合适的培养基而形成的低易燃电解质,用于在Na离子和Na / S细胞中施用。通过使用各种电化学技术进行的研究,包括阻抗光谱,伏安法和电压循环,表明溶液高离子电导率和钠转移数(T(+)),合适的稳定性窗口,非常低的电极/电解质差异性汽提/沉积过电压。直接阐述火焰揭示了由于采用的实验设置下缺失的火灾演变而显着的解决方案。使用各种电极,即Mesocarbon Microbead(MCMBS),锡 - 碳(Sn-C)和硫 - 多壁碳纳米管(S-MWCNT)进一步研究溶液中的溶液。结果表明合适的循环性能,具有稳定的可逆能力,范围为90mAhg(-1)的MCMB至130mAhg(-1),用于S-MWCNTS的250mAhg(-1),因此表明电解质是有前途的应用在可持续钠离子和硫磺电池中的候选物。

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