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基于碳酸酯的钠金属电池在-50°C下具有高容量保持率,由弱溶剂和电沉积阳极实现。

Carbonate Ester-Based Sodium Metal Battery with High-Capacity Retention at -50 °C Enabled by Weak Solvents and Electrodeposited Anode.

作者信息

Hu Chao, Guo Shan, Huang Fei, Yang Yi, Yan Chong, Zhao Chen-Zi, Liang Shuquan, Fang Guozhao, Zhang Qiang

机构信息

School of Materials Science and Engineering, Key Laboratory of Electronic Packaging and Advanced Functional Materials of Hunan Province, Central South University, Changsha, 410083, Hunan, China.

Advanced Research Institute of Multidisciplinary Science, Beijing Institute of Technology, Beijing, 100081, China.

出版信息

Angew Chem Int Ed Engl. 2024 Oct 1;63(40):e202407075. doi: 10.1002/anie.202407075. Epub 2024 Sep 2.

Abstract

Sodium metal batteries (SMBs) have received increasing attention due to the abundant sodium resources and high energy density, but suffered from the sluggish interfacial kinetic and unstable plating/stripping of sodium anode at low temperature, especially when matched with ester electrolytes. Here, we develop a stable ultra-low-temperature SMBs with high-capacity retention at -50 °C in a weak solvated carbonate ester-based electrolyte, combined with an electrodeposited Na (Cu/Na) anode. The Cu/Na anode with electrochemically activated "deposited sodium" and stable inorganic-rich solid electrolyte interphase (SEI) is favor for the fast Na migration, therefore accelerating the interfacial kinetic process. As a result, the Cu/Na||NaCrO battery exhibited the highest capacity retention (compared to room-temperature capacity) in carbonate ester-based SMBs (98.05 % at -25 °C, 91.3 % at -40 °C, 87.9 % at -50 °C, respectively). The cyclic stability of 350 cycles at -25 °C with a high energy efficiency of 96.15 % and 70 cycles at -50 °C can be achieved. Even in chill atmospheric environment with the fluctuant temperature, the battery can still operate over one month. This work provides a new opportunity for the development of low-temperature carbonate ester-based SMBs.

摘要

钠金属电池(SMBs)因其丰富的钠资源和高能量密度而受到越来越多的关注,但在低温下存在界面动力学迟缓以及钠负极电镀/脱镀不稳定的问题,尤其是与酯类电解质匹配时。在此,我们开发了一种稳定的超低温钠金属电池,在基于弱溶剂化碳酸酯的电解质中,于-50°C时具有高容量保持率,并结合了电沉积的钠(Cu/Na)负极。具有电化学活化的“沉积钠”和稳定的富无机固体电解质界面(SEI)的Cu/Na负极有利于钠的快速迁移,从而加速界面动力学过程。结果,Cu/Na||NaCrO电池在基于碳酸酯的钠金属电池中表现出最高的容量保持率(与室温容量相比)(在-25°C时为98.05%,在-40°C时为91.3%,在-50°C时为87.9%)。在-25°C下可实现350次循环的循环稳定性,能量效率高达96.15%,在-50°C下可实现70次循环。即使在温度波动的寒冷大气环境中,该电池仍可运行一个多月。这项工作为低温碳酸酯基钠金属电池的发展提供了新的机遇。

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