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A non-Newtonian fluid quasi-solid electrolyte designed for long life and high safety Li-O2 batteries.


ABSTRACT: The Li dendrite growth and the liquid electrolyte volatilization under semi-open architecture are intrinsic issues for Li-O2 battery. In this work, we propose a non-Newtonian fluid quasi-solid electrolyte (NNFQSE) SiO2-SO3Li/PVDF-HFP, which has both shear-thinning and shear-thickening properties. The component interactions among the sulfonated silica nanoparticles, liquid electrolyte, and polymer network are beneficial for decent Li+ conductivity and high liquid electrolyte retention without volatilization. Furthermore, NNFQSE exhibits shear-thinning property to eliminate the stress of dendrite growth during repeated cycling. Meanwhile, when the force suddenly increases, such as a high current rate, the NNFQSE may dynamically turn shear-thickening to respond and mechanically stiffen to inhibit the lithium dendrite penetration. By coupling with the NNFQSE, the lithium symmetrical battery can run over 2000 h under 1 mA cm-2 at room temperature, and the quasi-solid Li-O2 battery actualizes long life above 5000 h at 100 mA g-1.

SUBMITTER: Zheng G 

PROVIDER: S-EPMC10119181 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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A non-Newtonian fluid quasi-solid electrolyte designed for long life and high safety Li-O<sub>2</sub> batteries.

Zheng Guangli G   Yan Tong T   Hong Yifeng Y   Zhang Xiaona X   Wu Jianying J   Liang Zhenxing Z   Cui Zhiming Z   Du Li L   Song Huiyu H  

Nature communications 20230420 1


The Li dendrite growth and the liquid electrolyte volatilization under semi-open architecture are intrinsic issues for Li-O<sub>2</sub> battery. In this work, we propose a non-Newtonian fluid quasi-solid electrolyte (NNFQSE) SiO<sub>2</sub>-SO<sub>3</sub>Li/PVDF-HFP, which has both shear-thinning and shear-thickening properties. The component interactions among the sulfonated silica nanoparticles, liquid electrolyte, and polymer network are beneficial for decent Li<sup>+</sup> conductivity and h  ...[more]

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