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Sodium Octahydridotriborate as a Solid Electrolyte with Excellent Stability Against Sodium-Metal Anode.

作者信息

Chen Xin-Wei, Kang Jia-Xin, Fan Zi-Heng, Zhang Na, Zhang Wan-Yu, Zhang Guo-Guo, Zhu An-Qi, Lu Zhi-Wei, Qiu Pengtao, Wu Yiying, Chen Xuenian

机构信息

Henan Key Laboratory of Boron Chemistry and Advanced Materials, School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, 453007, China.

College of Chemistry, Zhengzhou University, Zhengzhou, Henan, 450001, China.

出版信息

Small. 2024 Oct;20(40):e2401439. doi: 10.1002/smll.202401439. Epub 2024 Jun 7.

Abstract

Solid-state sodium metal batteries have been extensively investigated because of their potential to improve safety, cost-effectiveness, and energy density. The development of such batteries urgently required a solid-state electrolyte with fast Na-ion conduction and favorable interfacial compatibility. Herein, the progress on developing the NaBH solid-state electrolytes is reported, which show a liquid-like ionic conductivity of 0.05 S cm at 56 °C with an activation energy of 0.35 eV after an order-disorder phase transformation, matching or surpassing the best single-anion hydridoborate conductors investigated up to now. The steady polarization voltage and significantly decreased resistance are achieved in the symmetric Na/NaBH/Na cell, indicating the great electrochemical stability and favorable interfacial contact with the Na metal of NaBH. Furthermore, a Na/NaBH/TiS battery, the first high-rate (up to 1 C) solid-state sodium metal battery using the single-anion hydridoborate electrolyte, is demonstrated, which exhibits superior rate capability (168.2 mAh g at 0.1 C and 141.2 mAh g at 1 C) and long-term cycling stability (70.9% capacity retention at 1 C after 300 cycles) at 30 °C. This work may present a new possibility to solve the interfacial limitations and find a new group of solid-state electrolytes for high-performance sodium metal batteries.

摘要

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