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首页> 外文期刊>Applied Surface Science >Effect of SiO_x-coating crystallinity on electrochemical performance of Si@ SiO_x anode materials in lithium-ion batteries
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Effect of SiO_x-coating crystallinity on electrochemical performance of Si@ SiO_x anode materials in lithium-ion batteries

机译:SiO_x涂层结晶度对​​锂离子电池Si @ SiO_x负极材料电化学性能的影响

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摘要

In this work, SiOx coatings with different crystallinity are successfully prepared on the surface of the silicon (Si) particles by dry oxidation and we oxidation. The SiOx coatings formed by low-temperature dry oxidation are not only continuous and uniform, but also have the low crystallinity. Theoretically, the continuous, uniform and low-crystallinity SiOx coating is more advantageous for lithium-ion transport and structural stability during the alloying/de-alloying. As a result, the 550 degrees C sample shows the best electrochemical performance. For example, the 550 degrees C sample has the highest specific discharge capacity a 2C than other samples. As the rate is restored to 0.1 C, the 550 degrees C sample also exhibits faster recovery of capacity. Besides, the discharge specific capacity of the 550 degrees C sample is up to 1108 mAh g(-1) after 100 cycles a 0.5 C, showing the best cycle stability.
机译:在这项工作中,通过干法氧化成功地在硅(Si)颗粒表面制备了具有不同结晶度的SiOx涂层。通过低温干式氧化形成的SiOx涂层不仅连续且均匀,而且结晶度低。从理论上讲,连续,均匀且低结晶度的SiOx涂层对于合金化/脱合金过程中的锂离子传输和结构稳定性更有利。结果,550℃的样品显示出最佳的电化学性能。例如,550摄氏度的样品比其他样品具有最高的2C比放电容量。随着速率恢复到0.1 C,550℃的样品还显示出更快的容量恢复。此外,在0.5 C的100次循环后,550℃样品的放电比容量高达1108 mAh g(-1),显示出最佳的循环稳定性。

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