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High-Performance Solid Composite Polymer Electrolyte for all Solid-State Lithium Battery Through Facile Microstructure Regulation

机译:适用于全固态锂电池的高性能固态复合聚合物电解质,通过容易的微结构调节

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摘要

Solid composite polymer electrolytes are the optimal candidate for all solid-state lithium batteries, because of their enhanced ionic conductivities, long-life cycle ability and compatibility to lithium anode. Herein, we reported a kind of solid composite polymer electrolyte comprised of poly(ethylene oxide), graphitic-like carbon nitride and lithium perchlorate, which was prepared by a facile solution blending method. Microstructure of the solid composite polymer electrolyte was regulated by thermal annealing and interaction among components and was characterized by XRD, DSC, FTIR-ATR, and ROM. The obtained solid composite polymer electrolyte achieved an ionic conductivity as high as 1.76 × 10−5 S cm−1 at 25°C. And the electrochemical stable window and the lithium ion transference number, t+, were also obviously enhanced. LiFePO4/Li solid-state batteries with the annealed PEO-LiClO4-g-C3N4 solid polymer electrolyte presented a high initial discharge capacity of 161.2 mAh g−1 and superior cycle stability with a capacity retention ratio of 81% after 200 cycles at 1C at 80°C. The above results indicates that the thermal annealing treatment and g-C3N4 as a novel structure modifier is crucial for obtaining the high-performance solid composite polymer electrolytes used in the all solid-state lithium battery.
机译:固态复合聚合物电解质是所有固态锂电池的最佳选择,因为它们具有增强的离子电导率,长寿命循环能力以及与锂阳极的相容性。在此,我们报道了一种由聚(环氧乙烷),类石墨氮化碳和高氯酸锂组成的固体复合聚合物电解质,它是通过一种简便的溶液混合方法制备的。固体复合聚合物电解质的微观结构通过热退火和组分之间的相互作用来调节,并通过XRD,DSC,FTIR-ATR和ROM进行表征。所获得的固体复合高分子电解质在25℃下的离子电导率高达1.76×10 -5 S cm -1 。电化学稳定窗口和锂离子转移数t +也得到了明显提高。带有退火PEO-LiClO4-g-C3N4固体聚合物电解质的LiFePO4 / Li固态电池具有161.2 mAh g -1 的高初始放电容量和出色的循环稳定性,容量保持率达81在80°C下于1C下200个循环后的%。以上结果表明,热退火处理和g-C3N4作为新型结构改性剂对于获得用于全固态锂电池的高性能固体复合聚合物电解质至关重要。

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