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用于高可逆钠离子电池的六氰合铁酸锰钾超结构的拓扑外延自组装

Topotactic Epitaxy Self-Assembly of Potassium Manganese Hexacyanoferrate Superstructures for Highly Reversible Sodium-Ion Batteries.

作者信息

Li Xiaoxia, Shang Yang, Yan Dong, Guo Lu, Huang Shaozhuan, Yang Hui Ying

机构信息

Pillar of Engineering Product Development, Singapore University of Technology and Design, Singapore 487372, Singapore.

School of Physics, Beihang University, Beijing 100191, P. R. China.

出版信息

ACS Nano. 2022 Jan 25;16(1):453-461. doi: 10.1021/acsnano.1c07231. Epub 2022 Jan 3.

Abstract

The cycle stability and voltage retention of a NaMn[Fe(CN)] (NMF) cathode for sodium-ion batteries (SIBs) has been impeded by the huge distortion from NaMn[Fe(CN)] to Mn[Fe(CN)] caused by the Jahn-Teller (JT) effect of Mn. Herein, we propose a topotactic epitaxy process to generate KMn[Fe(CN)] (KMF) submicron octahedra and assemble them into octahedral superstructures (OSs) by tuning the kinetics of topotactic transformation. As the SIB cathode, the self-assembly behavior of KMF improves the structural stability and decreases the contact area with the electrolyte, thereby inhibiting the transition metal in the KMF cathode from dissolving in the electrolyte. More importantly, the KMF partly transforms into NMF with Na de/intercalation, and the existing KMF acts as a stabilizer to disrupt the long-range JT order of NMF, thereby suppressing the overall JT distortion. As a result, the electrochemical performances of KMF cathodes outperform NMF with a highly reversible phase transition and outstanding cycling performance, and 80% capacity retention after 1500/1300 cycles at 0.1/0.5 A g. This work not only promotes creative synthetic methodologies but also promotes to explore the relationship between Jahn-Teller structural deformation and cycle stability.

摘要

由于锰的 Jahn-Teller(JT)效应导致 NaMn[Fe(CN)] 转变为 Mn[Fe(CN)] 时产生巨大畸变,钠离子电池(SIB)的 NaMn[Fe(CN)](NMF)正极的循环稳定性和电压保持率受到了阻碍。在此,我们提出一种拓扑外延工艺,通过调节拓扑转变的动力学来生成 KMn[Fe(CN)](KMF)亚微米八面体,并将它们组装成八面体超结构(OSs)。作为 SIB 正极,KMF 的自组装行为提高了结构稳定性,减小了与电解质的接触面积,从而抑制了 KMF 正极中的过渡金属溶解在电解质中。更重要的是,随着 Na 的嵌入/脱嵌,KMF 部分转变为 NMF,现有的 KMF 作为稳定剂破坏了 NMF 的长程 JT 有序性,从而抑制了整体 JT 畸变。结果,KMF 正极的电化学性能优于 NMF,具有高度可逆的相变和出色的循环性能,在 0.1/0.5 A g 下经过 1500/1300 次循环后容量保持率为 80%。这项工作不仅推动了创新合成方法的发展,还促进了对 Jahn-Teller 结构变形与循环稳定性之间关系的探索。

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