首页> 外文期刊>Journal of power sources >The effect of thermal stability for high-Ni-content layer-structured cathode materials, LiNi_(0.8)Mn_(0.1-x)Co_(0.1)Mo_xO_2 (x = 0, 0.02, 0.04)
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The effect of thermal stability for high-Ni-content layer-structured cathode materials, LiNi_(0.8)Mn_(0.1-x)Co_(0.1)Mo_xO_2 (x = 0, 0.02, 0.04)

机译:热稳定性对高Ni含量层状阴极材料LiNi_(0.8)Mn_(0.1-x)Co_(0.1)Mo_xO_2(x = 0,0.02,0.04)的影响

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摘要

Improving thermal stability is one of the most serious issues concerning Ni-based cathode materials for Li ion batteries. To increase the capacity for maintaining good thermal stability, we substitute Mo for Mn. We apply differential scanning calorimetry (DSC), thermal desorption spectrometry-mass spectrometry (TDS-MS), and X-ray diffraction (XRD) to elucidate the effect of Mo substitution. The application of DSC indicates that Mo substitution effectively reduces the exothermic reaction between the cathode and electrolyte. The applications of TDS-MS and XRD indicate that Mo substitution suppresses crystal structure change and reduces the oxygen release that accompanies heating below 350 ℃. However, the discharge capacities of Mo-substituted samples are lower than that of sample without Mo substitution. We optimize the Li/transition metal ratio and obtain Li_(1.10)Ni_(0.8)Mn_(0.06)Co_(0.1)Mo_(0.04)O_(2+δ). which satisfy both high capacity and high thermal stability requirements.
机译:关于锂离子电池的镍基正极材料,提高热稳定性是最严重的问题之一。为了增加保持良好热稳定性的能力,我们用Mo代替Mn。我们应用差示扫描量热法(DSC),热脱附质谱法(TDS-MS)和X射线衍射(XRD)来阐明Mo取代的影响。 DSC的应用表明,Mo取代有效地减少了阴极和电解质之间的放热反应。 TDS-MS和XRD的应用表明,Mo取代抑制了晶体结构的变化,并减少了在350℃以下加热引起的氧气释放。然而,Mo取代的样品的放电容量低于没有Mo取代的样品的放电容量。我们优化了Li /过渡金属的比例,得到了Li_(1.10)Ni_(0.8)Mn_(0.06)Co_(0.1)Mo_(0.04)O_(2 +δ)。同时满足高容量和高热稳定性要求。

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