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PEO基复合固态电解质的制备及性能研究 被引量:5
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作者 蓝凌霄 常清泉 +2 位作者 吴秋满 吴希 梁兴华 《装备制造技术》 2019年第6期84-88,共5页
高安全性的固态锂离子电池是目前研究的热点之一,固态电解质是实现固态全电池的关键。本文采用两段式高温烧结法制备NASICON结构的Li1.5Al0.5Ge1.5(PO4)3(LAGP)固态电解质填料,采用溶胶-凝胶浇注法制备PEO基复合固态电解质膜,通过XRD、... 高安全性的固态锂离子电池是目前研究的热点之一,固态电解质是实现固态全电池的关键。本文采用两段式高温烧结法制备NASICON结构的Li1.5Al0.5Ge1.5(PO4)3(LAGP)固态电解质填料,采用溶胶-凝胶浇注法制备PEO基复合固态电解质膜,通过XRD、SEM测试其物相和形貌特征,通过线性扫描伏安法、电导率测定、循环伏安法等测试其电化学性能。结果表明,制备的LAGP峰型明显,基本无杂峰出现,说明样品纯度较高。微观形貌(SEM)中可见LAGP粉末镶嵌在PEO膜中形成复合固态电解质膜,表明用溶胶-凝胶浇注法制备的PEO基固态电解质膜既具有有机聚合物PEO柔软、贴合性好的特性,同时也有无机陶瓷粉末LAGP较高电导率的性能。当LAGP占有机物PEO和LAGP总量的60%时,电导率最高,达到2.16×10^-4 S·cm^-1,PEO基固态电解质膜具有0.5~8 V的电化学窗口。 展开更多
关键词 Li1.5Al0.5Ge1.5(PO4)3 peo固态电解质膜 电化学性能
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Sandwich-type composited solid polymer electrolytes to strengthen the interfacial ionic transportation and bulk conductivity for all-solid-state lithium batteries from room temperature to 120℃
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作者 Jiewen Tan Zhen Wang +7 位作者 Jiawu Cui Zhanhui Jia Wensheng Tian Chao Wu Chengxin Peng Chengyong Shu Kang Yang Wei Tang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期288-295,I0007,共9页
The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the m... The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the melting point,dominantly limits their applications in solid-state batteries(SSBs).Although the inorganic filler such as CeO_(2)nanoparticle content of composite solid polymer electrolytes(CSPEs)can significantly reduce the enormous charge transfer impedance at the Li metal/SPEs interface,we found that the required content of CeO_(2)nanoparticles in SPEs varies for achieving a decent interfacial charge transfer impedance and the bulk ionic conductivity in CSPEs.In this regard,a sandwich-type composited solid polymer electrolyte with a 10%CeO_(2)CSPEs interlayer sandwiched between two 50%CeO_(2)CSPEs thin layers(sandwiched CSPEs)is constructed to simultaneously achieve low charge transfer impedance and superior ionic conductivity at 30℃.The sandwiched CSPEs allow for stable cycling of Li plating and stripping for 1000 h with 129 mV polarized voltage at 0.1 mA cm^(-2)and 30℃.In addition,the LiFePO_(4)/Sandwiched CSPEs/Li cell also exhibits exceptional cycle performance at 30℃and even elevated120℃without short circuits.Constructing multi-layered CSPEs with optimized contents of the inorganic fillers can be an efficient method for developing all solid-state PEO-based batteries with high performance at a wide range of temperatures. 展开更多
关键词 peo-based solid electrolytes CeO_(2)nanoparticles Charge transfer impedance Sandwich-type composite electrolytes All-solid-state Li metal batteries
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