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首页> 外文期刊>ChemSusChem >A Crosslinked Polyethyleneglycol Solid Electrolyte Dissolving Lithium Bis(trifluoromethylsulfonyl)imide for Rechargeable Lithium Batteries
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A Crosslinked Polyethyleneglycol Solid Electrolyte Dissolving Lithium Bis(trifluoromethylsulfonyl)imide for Rechargeable Lithium Batteries

机译:用于可再充电锂电池的交联聚乙二醇固体电解质溶解锂双(三氟甲基磺酰基)酰亚胺

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摘要

Replacing liquid electrolytes with solid ones can provide advantages in safety, and all-solid-state batteries with solid electrolytes are proposed to solve the issue of the formation of lithium dendrites. In this study, a crosslinked polymer composite solid electrolyte was presented, which enabled the construction of lithium batteries with outstanding electrochemical behavior over long-term cycling. The crosslinked polymeric host was synthesized through polymerization of the terminal amines of O,O-bis(2-aminopropyl) polypropylene glycol-block-polyethylene glycol-block-polypropylene glycol and terminal epoxy groups of bisphenol A diglycidyl ether at 90 degrees C and provided an amorphous matrix for Li+ dissolution. This composite solid electrolyte containing Li+ salt and garnet filler exhibited high flexibility, which supported the formation of favorable interfaces with the active materials, and possessed enough mechanical strength to suppress the penetration of lithium dendrites. Ionic conductivities higher than 5.0x10(-4) S cm(-1) above 45 degrees C were obtained as well as a wide electrochemical stability window (>4.51 V vs. Li/Li+) and a high Li+ diffusion coefficient (approximate to 16.6x10(-13) m(2) s(-1)). High cycling stability (>500 cycles or 1000 h) was demonstrated.
机译:用固体的液体电解质可以在安全性方面提供优点,并提出了具有固体电解质的全固态电池,以解决锂枝晶锂的形成问题。在该研究中,提出了一种交联的聚合物复合固体电解质,这使得能够在长期循环上具有出色的电化学行为的锂电池的构建。通过在90℃下的二苯酚A二甲醇甲醚的末端环氧基团的聚合物聚合,通过聚合通过聚合来合成交联的聚合物宿主。在90℃下并提供Li +溶解的非晶基质。该复合固体电解质含有Li +盐和石榴石填料表现出高柔韧性,该柔韧性具有高柔韧性,其支持具有活性材料的良好界面,并具有足够的机械强度以抑制锂枝晶的渗透。获得高于55℃的5.0×10(-4)厘米(-1)的离子电导率,以及宽的电化学稳定性窗口(> 4.51V与Li / Li +)和高Li +扩散系数(近似为16.6 X10(-13)M(2)S(-1))。证明了高循环稳定性(> 500次循环或1000小时)。

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