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Electrochemical deintercalation of lithium ions from lithium iron chloride spinel

机译:氯化锂铁尖晶石对锂离子的电化学脱嵌

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A lithium iron chloride inverse spinel was prepared to examine the electrochemical Li+ deintercalation from the chloride spinel in an all-solid state cell. While the chloride spinel has a high ionicity, it was confirmed that Li ions could be extracted from the structure without dissolving with a potential of 3.6 V vs. Li/Li+. Powder X-ray diffraction of the material showed coexistence of two kinds of spinels with different lattice constants, Mossbauer spectra revealed that the deintercalation of Li- was accompanied with the oxidation of iron from Fe2+ to Fe3+. The amount of deintercalated lithium estimated from the electrical capacity showed large value of 1.2 per formula unit, which indicates both Li+ in 8a and 16d sites were deintercalated. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 12]
机译:制备了氯化锂铁反尖晶石,以检查全固态电池中氯化物尖晶石的电化学Li +脱嵌。尽管氯化物尖晶石具有高离子性,但已证实可以从结构中提取锂离子而不会溶解,相对于Li / Li +的电位为3.6V。材料的粉末X射线衍射显示出两种具有不同晶格常数的尖晶石并存,Mossbauer光谱表明Li-的脱嵌伴随着铁从Fe2 +到Fe3 +的氧化。由电容量估算的脱嵌锂量显示每个公式单位1.2的大值,这表明8a和16d位的Li +均已脱嵌。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:12]

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