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Zirconium trisulfide as a promising cathode material for Li primary thermal batteries

机译:三硫化锆作为锂一次电池的有前途的正极材料

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摘要

In this work ZrS3 has been synthesized by solid state reaction in a sealed quartz tube and investigated as a candidate cathode material in Li thermal batteries. The structure of ZrS3 before and after cell testing has been studied using powder X-ray diffraction. A new spinel related material, LiZr2S4, has been identified as the product of the electrochemical process, which can be indexed to a = 10.452(8) Å cubic unit cell. The electrochemical properties of the batteries were investigated at 500 °C against Li13Si4 by galvanostatic discharge and galvanostatic intermittent titration technique (GITT). In a thermal Li cell at 500 °C a single voltage plateau of 1.70 V at a current density of 11 mA/cm2 was achieved with capacity of 357 mA h g-1. Therefore ZrS3 material has some promise as a cathode for Li thermal batteries.
机译:在这项工作中,ZrS3已通过在密封石英管中的固相反应合成,并被研究用作锂热电池中的候选阴极材料。使用粉末X射线衍射研究了细胞测试前后ZrS3的结构。一种新型的与尖晶石有关的材料LiZr2S4已被确定为电化学过程的产物,可以将其索引为= 10.452(8)Å立方晶胞。通过恒电流放电和恒电流间歇滴定技术(GITT),在500°C下针对Li13Si4研究了电池的电化学性能。在500°C的热锂电池中,以11 mA / cm2的电流密度实现了1.70 V的单电压平稳,容量为357 mA h g-1。因此,ZrS3材料有望成为锂热电池的正极。

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