首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Lithium storage properties of in situ synthesized Li2FeSiO4 and LiFeBO3 nanocomposites as advanced cathode materials for lithium ion batteries
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Lithium storage properties of in situ synthesized Li2FeSiO4 and LiFeBO3 nanocomposites as advanced cathode materials for lithium ion batteries

机译:原位合成Li2FeSiO4和LiFeBO3纳米复合材料作为锂离子电池高级正极材料的储锂性能

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摘要

(1 - x)Li2FeSiO4 center dot xLiFeBO(3)/C (x = 0, 0.02, 0.05, 0.08, 0.12, and 1.00) hetero-grains are successfully synthesized via an in situ citric acid-based sol-gel method and evaluated as cathode materials for lithium ion batteries. As a result, 0.92Li(2)FeSiO(4)center dot 0.08LiFeBO(3)/C delivers an optimum discharge capacity of 251 mA h g(-1) which corresponds to nearly 1.51 Li+ intercalation per molecule. Furthermore, a capacity retention of 104.5% after 5 cycles at 0.1 C is attained, and a value of 188.3 mA h g(-1) (approaching 1.13 Li+ intercalation per molecule) remains even after one hundred cycles at 1 C. In particular, at a high-rate of 10 C, there is almost no capacity decline even after 500 cycles, indicating an excellent cycling stability. The greatly improved electrochemical lithium storage properties of the novel in situ hybridized materials can be attributed to the enhanced kinetics towards Li+ diffusion and electron transport compared with that of pure Li2FeSiO4/C electrodes.
机译:通过基于柠檬酸的溶胶-凝胶法成功合成了(1-x)Li2FeSiO4中心点xLiFeBO(3)/ C(x = 0、0.02、0.05、0.08、0.12和1.00)杂粮作为锂离子电池的正极材料。结果,0.92Li(2)FeSiO(4)中心点0.08LiFeBO(3)/ C提供了251 mA h g(-1)的最佳放电容量,相当于每个分子近1.51 Li +嵌入。此外,在0.1 C下经过5个循环后,容量保持率为104.5%,即使在1 C下进行了100个循环后,仍保持188.3 mA hg(-1)的值(每个分子接近1.13 Li +嵌入)。在10 C的高温下,即使经过500次循环,容量也几乎没有下降,这表明循环稳定性极佳。与纯Li2FeSiO4 / C电极相比,新型原位杂化材料的电化学锂存储性能大大提高,可归因于其对Li +扩散和电子传输的增强动力学。

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