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用于高性能钠离子电池的具有可逆多电子反应的异质NASICON型阴极

Heterogeneous NASICON-Type Cathode With Reversible Multielectron Reaction for High-Performance Sodium-Ion Batteries.

作者信息

Zhu Lin, Xiang Shuang, Wang Miaomiao, Sun Dan, Huang Xiaobing, Li Yixin, Tang Yougen, Peng Zhiguang, Zhang Qi, Wang Haiyan

机构信息

Hunan Provincial Key Laboratory of Chemical Power Sources, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, P. R. China.

College of Chemistry and Materials Engineering, Hunan University of Arts and Science, Hunan, 415000, P. R. China.

出版信息

Adv Mater. 2025 Jun;37(23):e2408918. doi: 10.1002/adma.202408918. Epub 2024 Sep 9.

Abstract

Na superionic conductor (NASICON)-structured compounds demonstrate great application potential by their robust framework and compositional diversity. However, they are blamed for the mediocre energy density, and achieving both multielectron reaction and good cycling stability simultaneously is challenging. Herein, a novel heterogeneous NaFe(PO)(PO)/NaVTi(PO) (NFPP/NVTP) material with stable multielectron reaction is constructed by spray drying technology. The mutual promotion effect of intergrowth structures effectively improves the purity and the crystallization of NFPP/NVTP during the fabrication process, which is beneficial to the high capacity and cycling stability. As a result, the optimized NFPP/NVTP demonstrates a high reversible capacity of 155.3 mAh g at 20 mA g and outstanding cycling stability with 82.9% capacity retention over 2500 cycles at 1 A g, which are much superior to those of NFPP and NVTP individually. Even in full cell configuration, the energy density remains high at ≈380 Wh kg based on the cathode mass. The high capacity of NFPP/NVTP is also attributed to the successive reduction/oxidation mechanism involving the introduction of Ti and interfacial charge redistribution effect between the heterogeneous phases, which greatly improve the electronic and ionic conductivity. Moreover, high reversible structural evolution during the multisodium storage process further guarantees excellent cycling stability.

摘要

钠超离子导体(NASICON)结构的化合物因其坚固的框架和组成多样性而展现出巨大的应用潜力。然而,它们因能量密度一般而受到诟病,同时实现多电子反应和良好的循环稳定性具有挑战性。在此,通过喷雾干燥技术构建了一种具有稳定多电子反应的新型异质NaFe(PO)(PO)/NaVTi(PO)(NFPP/NVTP)材料。共生结构的相互促进作用有效地提高了NFPP/NVTP在制备过程中的纯度和结晶度,这有利于高容量和循环稳定性。结果,优化后的NFPP/NVTP在20 mA g下表现出155.3 mAh g的高可逆容量,在1 A g下2500次循环后容量保持率为82.9%,具有出色的循环稳定性,这分别远优于单独的NFPP和NVTP。即使在全电池配置中,基于阴极质量的能量密度仍高达约380 Wh kg。NFPP/NVTP的高容量还归因于涉及Ti引入的连续还原/氧化机制以及异质相之间的界面电荷重新分布效应,这极大地提高了电子和离子导电性。此外,多钠存储过程中的高可逆结构演变进一步保证了优异的循环稳定性。

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