论文标题

下一代阴极材料lini $ _ {0.8} $ mn $ _ {0.1} $ co $ _ {0.1} $ o $ $ _2 $的样本依赖性磁性依赖性

Sample Dependence of Magnetism in the Next Generation Cathode Material LiNi$_{0.8}$Mn$_{0.1}$Co$_{0.1}$O$_2$

论文作者

Mukherjee, P., Paddison, J. A. M., Xu, C., Ruff, Z., Wildes, A. R., Keen, D. A., Smith, R. I., Grey, C. P., Dutton, S. E.

论文摘要

We present a structural and magnetic study on two batches of polycrystalline LiNi$_{0.8}$Mn$_{0.1}$Co$_{0.1}$O$_2$ (commonly known as Li NMC 811), a Ni-rich Li ion battery cathode material, using elemental analysis, X-ray and neutron diffraction, magnetometry, and polarised neutron scattering measurements.我们发现,标记为S1和S2的样品具有成分li $ _ {1-x} $ ni $ _ {0.9+x-y} $ Mn $ _y $ _y $ co $ _ {0.1} $ o $ $ $ _2 $,$ x = 0.025(2) S2的0.094(2)$,对应于Li $^+$ layers中不同浓度的磁离子和多余的Ni $^{2+} $。这两个样品均显示在8.0(2)k处的零场冷却(ZFC)DC易感性中的峰值,但是S2的ZFC和FC(野外冷)曲线的温度差异很大:S1和S2的S1和122(2)k的峰值差异很大:64(2)k。 AC敏感性测量表明,S1随频率移动的转变,而在我们的测量分辨率分辨率内未观察到S2的这种转移。我们的结果证明了Li NMC 811中磁性的样本依赖性,这与先前有关父材料Linio $ _2 $的报告一致。我们进一步确定实验技术的组合是准确确定具有多个阳离子的下一代电池材料的化学组成的必要组合。

We present a structural and magnetic study on two batches of polycrystalline LiNi$_{0.8}$Mn$_{0.1}$Co$_{0.1}$O$_2$ (commonly known as Li NMC 811), a Ni-rich Li ion battery cathode material, using elemental analysis, X-ray and neutron diffraction, magnetometry, and polarised neutron scattering measurements. We find that the samples, labelled S1 and S2, have the composition Li$_{1-x}$Ni$_{0.9+x-y}$Mn$_y$Co$_{0.1}$O$_2$, with $x = 0.025(2)$, $y = 0.120(2)$ for S1 and $x = 0.002(2)$, $y = 0.094(2)$ for S2, corresponding to different concentrations of magnetic ions and excess Ni$^{2+}$ in the Li$^+$layers. Both samples show a peak in the zero-field cooled (ZFC) dc susceptibility at 8.0(2) K but the temperature at which the ZFC and FC (field-cooled) curves deviate is substantially different: 64(2) K for S1 and 122(2) K for S2. Ac susceptibility measurements show that the transition for S1 shifts with frequency whereas no such shift is observed for S2 within the resolution of our measurements. Our results demonstrate the sample dependence of magnetic properties in Li NMC 811, consistent with previous reports on the parent material LiNiO$_2$. We further establish that a combination of experimental techniques are necessary to accurately determine the chemical composition of next generation battery materials with multiple cations.

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