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首页> 外文期刊>ACS applied materials & interfaces >Improving the Thermal Stability of NMC 622 Li-Ion Battery Cathodes through Doping During Coprecipitation
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Improving the Thermal Stability of NMC 622 Li-Ion Battery Cathodes through Doping During Coprecipitation

机译:通过掺杂在共沉淀过程中提高NMC 622锂离子电池阴极的热稳定性

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Increasing the Ni content of LiNixMnyCo1-x-yO2 (NMC) cathodes can increase the capacity, but additional stability is needed to improve safety and longevity characteristics. In order to achieve this improved stability, Mg and Zr were added during the coprecipitation to uniformly dope the final cathode material. These dopants reduced the capacity of the material to some extent, depending on the concentration and calcination temperature. However, these dopants can impart substantial stabilization. It was found that the degree of stabilization is strongly dependent on the calcination temperature of the material. In addition, we used synchrotron X-ray diffraction during thermal breakdown to better understand why the different dopants impact the thermal stability and confirm the stabilization effects of the dopants.
机译:增加Linixmnyco1-X-YO2(NMC)阴极的NI含量可以增加容量,但需要额外的稳定性来提高安全性和寿命特性。 为了实现这种改善的稳定性,在共沉淀过程中加入Mg和Zr以均匀地掺杂最终的阴极材料。 根据浓度和煅烧温度,这些掺杂剂在一定程度上降低了材料的容量。 然而,这些掺杂剂可以赋予大量稳定性。 发现稳定程度强烈依赖于材料的煅烧温度。 此外,我们在热分解过程中使用了同步X射线衍射,以更好地理解为什么不同掺杂剂会影响热稳定性并确认掺杂剂的稳定效果。

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