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首页> 外文期刊>Journal of Applied Electrochemistry >A low external temperature method for synthesis of active electrode materials for Li batteries – Part B: Synthesis of lithium iron oxides Li x Fe y O z
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A low external temperature method for synthesis of active electrode materials for Li batteries – Part B: Synthesis of lithium iron oxides Li x Fe y O z

机译:一种用于锂电池活性电极材料的低温外部方法– B部分:锂铁氧化物Li x Fe y O z 的合成

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摘要

Anode materials for lithium-ion batteries based on iron oxides were synthesized using two different methods: a Low External Temperature Method (LETM) and a conventional Solid State Reaction Method (SSRM). Both methods lead to the formation of final products representing a mixture of two phases: approximately 75% LiFeO2 and 25% Li−x Fe5O8 (0 < x ≤ 0.1). When compared with the ordinary solid state synthesis, LETM creates conditions for carrying out the synthesis at a lower external calcination temperature (200 °C) over a shorter period. The properties of the Li x Fe y O z obtained by the LETM were compared with those of the same compound obtained by SSR at 700 °C. Higher initial discharge capacity was displayed by the sample synthesized by the SSR method, while a superior cycling stability was shown by the sample synthesized by the LETM. The latter shows approximately double capacity at the 30th cycle as compared with the sample synthesized by SSRM.
机译:使用两种不同的方法合成了基于铁氧化物的锂离子电池负极材料:低温外部方法(LETM)和常规固态反应方法(SSRM)。两种方法均导致形成代表两相混合物的最终产品:约75%LiFeO2 和25%Li-x Fe5 O8 (0 Fe y O z 的性质与通过SSR在700°C下获得的相同化合物的性质进行比较。通过SSR方法合成的样品显示出更高的初始放电容量,而通过LETM合成的样品显示出优异的循环稳定性。与通过SSRM合成的样品相比,后者在第30个循环中显示出大约两倍的容量。

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