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用于全固态锂金属电池的立体光刻三维打印固态聚合物电解质

Stereolithography Three-Dimensional Printing Solid Polymer Electrolytes for All-Solid-State Lithium Metal Batteries.

作者信息

He Yingjie, Chen Shaojie, Nie Lu, Sun Zhetao, Wu Xinsheng, Liu Wei

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.

出版信息

Nano Lett. 2020 Oct 14;20(10):7136-7143. doi: 10.1021/acs.nanolett.0c02457. Epub 2020 Sep 1.

Abstract

Liquid-free all-solid-state lithium metal batteries (ASSLMBs) are promising candidates to meet the requirements of safety and high energy density for energy storages. However, poor interfacial contact is a major obstacle limiting their applications. Herein, we report a solid polymer electrolyte (SPE), originally prepared by stereolithography (SLA) three-dimensional (3D) printing for ASSLMBs. A 3D-Archimedean spiral structured SPE is rationally designed, which can shorten the Li-ion transport pathway from the electrolyte into the electrode, reinforce the interfacial adhesion, and improve the mass loading of active materials. The SLA printed SPE exhibits a high ionic conductivity of 3.7 × 10 S cm at 25 °C. Furthermore, Li|3D-SPE|LFP cells achieve reduced interfacial impedance and higher specific capacity of 128 mAh g after 250 cycles than those using structure-free SPE of 32 mAh g. This work opens the great promise of SLA 3D printing technology to fabricate high-performance SPEs in ASSLMBs for next-generation energy storages.

摘要

无液全固态锂金属电池(ASSLMBs)是满足储能安全和高能量密度要求的有前途的候选者。然而,不良的界面接触是限制其应用的主要障碍。在此,我们报道了一种最初通过立体光刻(SLA)三维(3D)打印制备的用于ASSLMBs的固体聚合物电解质(SPE)。合理设计了一种3D阿基米德螺旋结构的SPE,它可以缩短锂离子从电解质进入电极的传输路径,增强界面附着力,并提高活性材料的质量负载。SLA打印的SPE在25℃时表现出3.7×10 S cm的高离子电导率。此外,与使用无结构SPE的电池相比,Li|3D-SPE|LFP电池在250次循环后界面阻抗降低,比容量更高,达到128 mAh g,而无结构SPE的电池比容量为32 mAh g。这项工作为在下一代储能的ASSLMBs中制造高性能SPEs开启了SLA 3D打印技术的巨大前景。

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