Li Yang, Sun Zheng, Yuan Xuanyi, Jin Haibo, Zhao Yongjie
Beijing Key Laboratory of Construction Tailorable Advanced Functional Materials and Green Applications, School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, PR China.
Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing 314000, PR China.
ACS Appl Mater Interfaces. 2023 Oct 25;15(42):49321-49328. doi: 10.1021/acsami.3c13483. Epub 2023 Oct 17.
Solid-state metal batteries with nonflammable solid-state electrolytes are regarded as the next generation of energy storage technology on account of their high safety and energy density. However, as for most solid electrolytes, low room temperature ionic conductivity and interfacial issues hinder their practical application. In this work, Na super ionic conductor (NASICON)-type NaZrSiPO (NZSP) electrolytes with improved ionic conductivity are synthesized by the NaBr-assisted sintering method. The effects of the NaBr sintering aid on the crystalline phase, microstructure, densification degree, and electrical performance as well as the electrochemical performances of the NZSP ceramic electrolyte are investigated in detail. Specifically, the NZSP-7%NaBr-1150 ceramic electrolyte has an ionic conductivity of 1.2 × 10 S cm (at 25 °C) together with an activation energy of 0.28 eV. A low interfacial resistance of 35 Ω cm is achieved with the Na/NZSP-7%NaBr-1150 interface. Furthermore, the Na/NZSP-7%NaBr-1150/NaV(PO) battery manifests excellent cycling stability with a capacity retention of 98% after 400 cycles at 1 C and 25 °C.
具有不可燃固态电解质的固态金属电池因其高安全性和能量密度而被视为下一代储能技术。然而,对于大多数固态电解质而言,室温离子电导率低和界面问题阻碍了它们的实际应用。在这项工作中,通过NaBr辅助烧结法合成了具有改善离子电导率的钠超离子导体(NASICON)型NaZrSiPO(NZSP)电解质。详细研究了NaBr烧结助剂对NZSP陶瓷电解质的晶相、微观结构、致密化程度、电学性能以及电化学性能的影响。具体而言,NZSP-7%NaBr-1150陶瓷电解质在25°C时的离子电导率为1.2×10 S cm,激活能为0.28 eV。Na/NZSP-7%NaBr-1150界面的界面电阻低至35Ω cm。此外,Na/NZSP-7%NaBr-1150/NaV(PO)电池表现出优异的循环稳定性,在1 C和25°C下400次循环后容量保持率为98%。