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Polydopamine coated TiO2 nanofiber fillers for polyethylene oxide hybrid electrolytes for efficient and durable all solid state lithium ion batteries

机译:Polydopamine涂二氧化钛纳米纤维填充物聚氧化乙烯混合电解质高效、耐用的全固态锂离子电池

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摘要

The polyethylene oxide (PEO) solid electrolyte is a promising candidate for all solid state lithium-ion batteries (ASSLIBs), but its low ionic conductivity and poor interfacial compatibility against lithium limit the rate and cycling performance of the cell. Herein, the novel and efficient TiO2@polydopamine (PDA) fillers have been synthesized by coating PDA onto the surface of the TiO2 nanofibers, which are then incorporated into PEO matrices to form the composite electrolyte. The composite electrolyte displays a higher ionic conductivity of 4.36 × 10−4 S cm−1, a wider electrochemical window up to about 5 V and a higher tLi+ of 0.190 at 55 °C compared to the PEO electrolyte. Additionally, the Li/composite electrolyte/Li batteries show a stable Li plating/stripping cycle performance, indicating good interfacial compatibility between the composite electrolyte and lithium. Thus, the LiFePO4/Li ASSLIBs display a fantastic rate performance and cycling stability, and deliver superior discharge specific capacities of 153.83 and 136.45 mA h g−1 at current densities of 0.5C and 2C, achieving good capacity retentions of 93.27% and 91.23% at 0.5C and 1C after 150 cycles, respectively. Therefore, the PEO–TiO2@PDA composite electrolyte is a potential solid electrolyte for ASSLIBs.
机译:聚氧化乙烯(PEO)固态电解质一个有前途的候选人为全固态锂离子电池(ASSLIBs),但是它的低离子电导率和较差的界面兼容性与锂限制率和电池的循环性能。小说和高效TiO2@polydopamine (PDA)填充剂所合成涂料PDA上二氧化钛纳米纤维的表面,然后纳入PEO矩阵形式复合电解质。显示较高的离子电导率4.36×10−1−4厘米,宽电化学窗口大约5 V和更高的0.190 + tLi 55°C而PEO电解质。李/复合电解质/李电池显示李电镀/剥离循环性能稳定,表明良好的界面之间的兼容性复合电解液和锂。磷酸铁锂/李ASSLIBs显示惊人的速度性能和循环稳定性,并交付153.83优越放电的具体能力马和136.45 h g−1的电流密度0.5摄氏度和2 c,实现良好的译者的能力93.27%和91.23%在0.5 c和1 c 150年之后周期,分别。复合固体电解质是一个潜在的ASSLIBs电解质。

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