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A Solid Electrolyte Based on Electrochemical Active Li_4Ti_5O_(12) with PVDF for Solid State Lithium Metal Battery

机译:一种基于PVDF电化学活性Li_4Ti_5O_(12)的固态锂金属电池电解质

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摘要

In parallel with researches unveiling the nature and mechanism in solid state battery, numbers of investigations have been pursuing methods to stabilize their performance as well as to reduce the cost. Simple preparation and earth-abundant ingredients are preconditions for a solid state electrolyte to be suitable for scalable production. In this work, a commercial anode active material, spinel Li_4Ti_5O_(12), is introduced for the first time, which has high ionic conductivity to sustain high rate charge/discharge with considerable high performance/cost ratio, into poly(vinylidene fluoride) to achieve a composite solid electrolyte. The membrane solid electrolyte containing 80 wt of the Li_4Ti_5O_(12) (LTO-8) shows outstanding ionic conductivity of 2.87 × 10~(?4) S cm~(?1) at 35 ℃ and inhibits electronic conductive network. The self-sacrificed interface contributes to the stabilized performance of the composite. Li‖LiFePO_4 cells with LTO-8 present a discharge specific capacity of 150 mAh g~(?1) at 0.5C and a considerable average specific capacity of 119 mAh g~(?1) under 5C in 400 cycles, demonstrating its excellent working performance. This investigation provides promising application of Li_4Ti_5O_(12) for solid state electrolytes, which is superior to the reported solid state electrolytes in comprehensive performance, and surely paves another commercial way to solid state batteries.
机译:在揭示固态电池的性质和机理的研究的同时,许多研究一直在寻求稳定其性能和降低成本的方法。简单的制备和丰富的土壤成分是固态电解质适合规模化生产的先决条件。本工作首次将具有高离子电导率、高倍率、高性价比、高倍率充放电、高倍率充放电的商业阳极活性材料尖晶石Li_4Ti_5O_(12)引入聚偏氟乙烯中,实现复合固体电解质。含有80wt%Li_4Ti_5O_(12)(LTO-8)的膜固体电解质在35 °C时表现出2.87 × 10~(?4) S cm~(?1)的出色离子电导率,并抑制电子导电网络。自我牺牲的界面有助于复合材料的稳定性能。采用LTO-8的Li‖LiFePO_4电池在0.5C下放电比容量为150 mAh g~(?1),在5C下400次循环时平均比容量为119 mAh g~(?1),显示出其优异的工作性能。该研究为Li_4Ti_5O_(12)在固态电解质中提供了广阔的应用前景,其综合性能优于已报道的固态电解质,无疑为固态电池铺平了另一条商业化道路。

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