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XPS Investigation of Surface Reactivity of Electrode Materials: Effect of the Transition Metal

机译:XPS研究电极材料的表面反应性:过渡金属的影响

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The role of the transition metal nature and Al2O3 coating on the surface reactivity of LiCoO2 and LiNi1/3Mn1/3Co1/3O2 (NMC) materials were studied by coupling chemisorption of gaseous probes molecules and X-ray photoelectron (XPS) spectroscopy. The XPS analyses have put in evidence the low reactivity of the LiMO2 materials toward basic gaseous probe (NH3). The reactivity toward SO2 gaseous probe is much larger (roughly more than 10 times) and strongly influenced by the nature of metal. Only one adsorption mode (redox process producing adsorbed sulfate species) was observed at the LiCoO2 surface, while NMC materials exhibit sulfate and sulfite species at the surface. On the basis of XPS analysis of bare materials and previous theoretical work, we propose that the acidbase adsorption mode involving the Ni2+ cation is responsible for the sulfite species on the NMC surface. After Al2O3 coating, the surface reactivity was clearly decreasing for both LiCoO2 and NMC materials. In addition, for LiCoO2, the coating modifies the surface reactivity with the identification of both sulfate and sulfite species. This result is in line with a change in the adsorption mode from redox toward acidbase after Al/Co substitution. In the case of NMC materials, the coating induced a decrease of the sulfite species content at the surface. This phenomenon can be related to the cation mixing effect in the NMC.
机译:通过耦合气态探针分子的化学吸附和X射线光电子能谱研究了过渡金属的性质和Al2O3涂层对LiCoO2和LiNi1 / 3Mn1 / 3Co1 / 3O2(NMC)材料的表面反应性的作用。 XPS分析已证明LiMO2材料对碱性气态探针(NH3)的低反应性。对SO2气体探针的反应性要大得多(大约10倍以上),并受金属性质的强烈影响。在LiCoO2表面仅观察到一种吸附模式(氧化还原过程产生吸附的硫酸盐物质),而NMC材料在表面显示出硫酸盐和亚硫酸盐物质。基于裸露材料的XPS分析和先前的理论工作,我们提出涉及Ni2 +阳离子的酸碱吸附模式是NMC表面亚硫酸盐类的原因。 Al2O3涂层后,LiCoO2和NMC材料的表面反应性均明显降低。此外,对于LiCoO2,该涂层可通过识别硫酸盐和亚硫酸盐物质来改变表面反应性。该结果与Al / Co取代后从氧化还原向酸碱的吸附模式的变化一致。在NMC材料的情况下,涂层导致表面亚硫酸盐类物质含量的降低。这种现象可能与NMC中的阳离子混合效应有关。

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