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Advanced development issues related to plasma-sprayed pyrite electrodes for thermal batteries

机译:与等离子体喷涂的硫铁矿电极有关的高级开发问题,用于热电池

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The use of LiCl-KCl eutectic electrolyte as a co-spray additive for the plasma spraying of pyrite electrodes for thermal batteries has been demonstrated to provide greater mechanical strength and superior electrochemical performance relative to the use of elemental sulfur. However, higher electrolyte contents in the deposit relative to that of the feedstock are concerns, in that this results in lower energy densities and specific energies. A systematic study of the effect of the electrolyte concentration in the feedstock on the final physical and chemical properties of the final plasma-sprayed deposit was undertaken. The resulting deposits were then tested in single cells to characterize the resultant electrochemical properties. A study was also initiated to examine the effects of various lithiation agents at several concentrations on the initial voltage spike that occurs at the onset of discharge of such electrodes in Li(Si)/LiCl-KCl (MgO)/FeS{sub}2 single cells. The main technical issues that need to be resolved to make this a commercially viable processing technique are described.
机译:已经证明了使用LiCl-kCl共晶电解质作为用于热电池的硫铁矿电极的等离子体喷射的共吸入添加剂,以提供更大的机械强度和相对于使用元素硫的使用优异的电化学性能。然而,相对于原料的沉积物中的更高电解质含量是令人担忧的,因为这导致较低的能量密度和特定能量。进行了对原料中电解质浓度对最终等离子体喷涂沉积物的最终物理和化学性质的影响的系统研究。然后在单细胞中测试所得沉积物以表征所得的电化学性质。还启动了一种研究,以检查各种锂化试剂在初始电压峰值上的初始电压尖峰上的效果,该初始电压尖峰发生在Li(Si)/ LiCl-Kcl(MgO)/ Fes} 2单个单个单个细胞。描述了需要解决的主要技术问题,以使该技术进行商业上可行的加工技术。

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