首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Surface Characterization of Li-Substituted Compositionally Heterogeneous NaLi0.045Cu0.185Fe0.265Mn0.505O2 Sodium-Ion Cathode Material
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Surface Characterization of Li-Substituted Compositionally Heterogeneous NaLi0.045Cu0.185Fe0.265Mn0.505O2 Sodium-Ion Cathode Material

机译:Li-取代成式非均相NALI0.045CU0.185FE0.265MN0.505O2钠离子阴极材料的表面表征

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摘要

The understanding of surface chemical and structural processes can provide some insights into designing stable sodium cathode materials. Herein, Li-substituted and compositionally heterogeneous NaLi0.045Cu0.185Fe0.265Mn0.505O2 is used as a platform to investigate the interplay between Li substitution, surface chemistry, and battery performance. Li substitution improves the initial discharge capacity and energy density. However, there is no noticeable benefit in the long-term cycling stability of this material. The Li substitution in the transition-metal (TM) layer also seems to influence the transition-metal (TM) 3d-oxygen (O) 2p hybridization. Upon desodiation, the surface of active particles undergoes significant transition-metal reduction, especially Mn. Furthermore, the presence of electrolyte drastically accelerates such surface degradation. In general, the Li-substituted material experiences severe surface degradation, which is partially responsible for the performance degradation upon long-term cycling. While some studies have reported the benefits of Li substitution, the present study suggests that the effectiveness of the Li substitution strategy depends on the TM compositional distribution. More efforts are needed to improve the surface chemistry of Li-substituted sodium cathode materials.
机译:对表面化学和结构过程的理解可以提供一些洞察设计稳定的钠阴极材料。在本文中,使用Li-取代和合成的非均相NALI0.045CU0.185FE0.265MN0.505O2用作研究LI替代,表面化学和电池性能之间的相互作用的平台。李替代提高了初始放电容量和能量密度。然而,在这种材料的长期循环稳定性中没有明显的益处。过渡金属(TM)层中的LI取代似乎影响过渡金属(TM)3D-氧(O)2P杂交。在去析出时,活性颗粒的表面经历显着的过渡金属还原,尤其是Mn。此外,电解质的存在大大加速了这种表面劣化。通常,Li-替代材料经历严重的表面降解,这是在长期循环后的性能降解的部分原因。虽然一些研究报告了李替代的益处,但本研究表明,李替代策略的有效性取决于TM组成分布。需要更多的努力来改善Li替代钠阴极材料的表面化学。

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