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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >High Li+ transference gel interface between solid-oxide electrolyte and cathode for quasi-solid lithium-ion batteries
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High Li+ transference gel interface between solid-oxide electrolyte and cathode for quasi-solid lithium-ion batteries

机译:用于准固体锂离子电池的固氧化物电解质和阴极之间的高Li +转移凝胶界面

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Solid-oxide electrolytes (SEs) are an alternative to using conventional organic liquid electrolytes for lithium ion batteries (LIBs) and offer solutions to the challenges associated with safety and energy density. However, SE-based LIBs suffer from high interfacial resistance between the electrolyte and electrodes. In this study, we develop a gelled poly(acrylonitrile-co-methyl acrylate) (P(AN-co-MA)) framework to facilitate Li+ transfer across the interface between an SE pellet of garnet-type Li6.75La3Zr1.75Ta0.25O12 (LLZTO) and a LiFePO4 cathode. The gelled polymeric framework exhibits high ionic conductivity and a large Li+ transference number (t(Li)(+)) of 0.67 that results from the synergy between the nitrile and acrylate functionalities and minimizes the formation of ion-solvent clusters and mobility of PF6- anions. The large t(Li)(+) characteristic is advantageous for forming a junction with SEs featuring a unity t(Li)(+) and suppressing polarization caused by PF6- accumulation. When coupled with the LLZTO pellet, the gel polymer electrolyte may exhibit collimated Li+ transport that suppresses Li-dendrite formation. The resulting Li|LLZTO|LiFePO4 battery demonstrates outstanding capacity (e.g., 154 mA h g(-1) at 0.1 mA cm(-2) and 25 degrees C), high rate retention, and excellent cycling stability. The present study demonstrates that the gelled P(AN-co-MA) framework acts an ideal interface between the SE and cathode for fabricating quasi-solid LIBs.
机译:固体氧化物电解质(SES)是使用用于锂离子电池(LIBS)的常规有机液体电解质的替代方案,并提供与安全性和能量密度相关的挑战的解决方案。然而,基于Se的Libs患有电解质和电极之间的高界面抗性。在这项研究中,我们开发凝胶化聚(丙烯腈 - 共聚甲基丙烯酸酯)(P(AN-CO-MA))框架,以促进Li +在石榴石型LI6.75LA3ZR1.75TA0.25012的SE颗粒之间的界面之间转移(llzto)和Lifepo4阴极。凝胶化的聚合物框架具有0.67的高离子电导率和大的Li +转移数(T(Li)(+)),其由腈和丙烯酸酯官能团之间的协同作用产生,并最大限度地减少离子溶剂簇的形成和PF6的迁移率阴离子。大的T(Li)(+)特性是有利的,用于形成具有单位T(Li)(+)和抑制由PF6累积引起的偏振的交配的结。当与LLZTO颗粒结合时,凝胶聚合物电解质可以表现出准直的Li +转运,抑制Li-Dendrite的形成。得到的LI | LLZTO | LiFePO4电池显示出卓越的容量(例如,154 mA H(-1),在0.1 mA cm(-2)和25℃),高速保留和优异的循环稳定性下。本研究表明,凝胶的P(AN-CO-MA)框架作用于SE和阴极之间的理想界面,用于制造准固体libs。

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