Ma Cui, Abulikemu Aierxiding, Bao Jian, Uchiyama Tomoki, Xia Yong-Yao, Li Xun-Lu, Uchimoto Yoshiharu, Zhou Yong-Ning
Department of Materials Science, Fudan University, Shanghai, 200438, China.
Department of Interdisciplinary Environment, Kyoto University, Kyoto, 606-8501, Japan.
Small. 2023 Sep;19(37):e2302332. doi: 10.1002/smll.202302332. Epub 2023 May 4.
Stacking order plays a key role in defining the electrochemical behavior and structural stability of layer-structured cathode materials. However, the detailed effects of stacking order on anionic redox in layer-structured cathode materials have not been investigated specifically and are still unrevealed. Herein, two layered cathodes with the same chemical formula but different stacking orders: P2-Na Li Mn Cu O (P2-LMC) and P3-Na Li Mn Cu O (P3-LMC) are compared. It is found that P3 stacking order is beneficial to improve the oxygen redox reversibility compared with P2 stacking order. By using synchrotron hard and soft X-ray absorption spectroscopies, three redox couples of Cu /Cu , Mn /Mn , and O /O are revealed to contribute charge compensation in P3 structure simultaneously, and two redox couples of Cu /Cu and O /O are more reversible than those in P2-LMC due to the higher electronic densities in Cu 3d and O 2p orbitals in P3-LMC. In situ X-ray diffraction reveals that P3-LMC exhibits higher structural reversibility during charge and discharge than P2-LMC, even at 5C rate. As a result, P3-LMC delivers a high reversible capacity of 190.3 mAh g and capacity retention of 125.7 mAh g over 100 cycles. These findings provide new insight into oxygen-redox-involved layered cathode materials for SIBs.
堆积顺序在定义层状结构阴极材料的电化学行为和结构稳定性方面起着关键作用。然而,堆积顺序对层状结构阴极材料中阴离子氧化还原的具体影响尚未得到专门研究,仍然未知。在此,比较了两种化学式相同但堆积顺序不同的层状阴极:P2-NaLiMnCuO(P2-LMC)和P3-NaLiMnCuO(P3-LMC)。研究发现,与P2堆积顺序相比,P3堆积顺序有利于提高氧氧化还原的可逆性。通过使用同步加速器硬X射线和软X射线吸收光谱,揭示了Cu²⁺/Cu⁺、Mn³⁺/Mn²⁺和O²⁻/O⁻这三对氧化还原对在P3结构中同时贡献电荷补偿,并且由于P3-LMC中Cu 3d和O 2p轨道具有更高的电子密度,Cu²⁺/Cu⁺和O²⁻/O⁻这两对氧化还原对比P2-LMC中的更可逆。原位X射线衍射表明,即使在5C倍率下,P3-LMC在充放电过程中也比P2-LMC表现出更高的结构可逆性。结果,P3-LMC具有190.3 mAh g⁻¹的高可逆容量,并且在100次循环后容量保持率为125.7 mAh g⁻¹。这些发现为用于钠离子电池的涉及氧氧化还原的层状阴极材料提供了新的见解。