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介电填料诱导的混合界面助力高面积容量下坚固的固态锂金属电池

Dielectric Filler-Induced Hybrid Interphase Enabling Robust Solid-State Li Metal Batteries at High Areal Capacity.

作者信息

An Xufei, Liu Yang, Yang Ke, Mi Jinshuo, Ma Jiabin, Zhang Danfeng, Chen Likun, Liu Xiaotong, Guo Shaoke, Li Yuhang, Ma Yuetao, Liu Ming, He Yan-Bing, Kang Feiyu

机构信息

Shenzhen All-Solid-State Lithium Battery Electrolyte Engineering Research Center, Institute of Materials Research (IMR), Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, P. R. China.

School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, P. R. China.

出版信息

Adv Mater. 2024 Mar;36(13):e2311195. doi: 10.1002/adma.202311195. Epub 2023 Dec 27.

Abstract

The fillers in composite solid-state electrolyte are mainly responsible for the enhancement of the conduction of Li ions but barely regulate the formation of solid electrolyte interphase (SEI). Herein, a unique filler of dielectric NaNbO for the poly(vinylidene fluoride) (PVDF)-based polymer electrolyte, which is subjected to the exchange of Li and Na during cycling, is reported and the substituted Na is engaged in the construction of a fluorinated Li/Na hybrid SEI with high Young's modulus, facilitating the fast transport of Li at the interface at a high areal capacity and suppressing the Li dendrite growth. The dielectric NaNbO also induces the generation of high-dielectric β phase of PVDF to promote the dissociation of Li salt. The Li/Li symmetrical cell exhibits a long-term dendrite-free cycling over 600 h at a high areal capacity of 3 mA h cm. The LiNiMnCoO/Li solid-state cells with NaNbO stably cycle 2200 times at 2 C and that paired with high-loading cathode (10 mg cm) can stably cycle for 150 times and exhibit excellent performances at -20 °C. This work provides a novel design principle of fillers undertaking interfacial engineering in composite solid-state electrolytes for developing the safe and stable solid-state lithium metal battery.

摘要

复合固态电解质中的填料主要负责增强锂离子传导,但几乎不调节固体电解质界面(SEI)的形成。在此,报道了一种用于聚偏氟乙烯(PVDF)基聚合物电解质的独特介电填料NaNbO,其在循环过程中经历Li和Na的交换,并且取代的Na参与构建具有高杨氏模量的氟化Li/Na混合SEI,促进高面容量下界面处Li的快速传输并抑制Li枝晶生长。介电NaNbO还诱导PVDF高介电β相的产生以促进锂盐的解离。Li/Li对称电池在3 mA h cm的高面容量下表现出超过600小时的长期无枝晶循环。具有NaNbO的LiNiMnCoO/Li固态电池在2 C下稳定循环2200次,与高负载阴极(10 mg cm)配对时可稳定循环150次,并在-20°C下表现出优异性能。这项工作为复合固态电解质中进行界面工程的填料提供了一种新颖的设计原则,以开发安全稳定的固态锂金属电池。

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