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用于锂金属电池的仿生离子选择性纳米通道分离器。

Bioinspired Separator with Ion-Selective Nanochannels for Lithium Metal Batteries.

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.

Department of Chemistry, University of Illinois at Chicago, Chicago, Illinois 60607, United States.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 12;15(14):18333-18342. doi: 10.1021/acsami.3c01311. Epub 2023 Mar 28.

Abstract

The free transport of anions through commercial polyolefin separators used in lithium metal batteries (LMBs) gives rise to concentration polarization and rapid growth of lithium dendrites, leading to poor performance and short circuits. Here, a new poly(ethylene--acrylic acid) (EAA) separator with functional active sites (i.e., carboxyl groups) distributing along the pore surface was fabricated, forming bioinspired ion-conducting nanochannels within the separator. As the carboxyl groups effectively desolvated Li and immobilized anion, the as-prepared EAA separator selectively accelerated the transport of Li with transference number of Li () up to 0.67, which was further confirmed by molecular dynamics simulations. The battery with the EAA separator can be stably cycled over 500 h at 5 mA cm. The LMBs with the EAA separator have exceptional electrochemical performance of 107 mAh g at 5 C and a capacity retention of 69% after 200 cycles. This work provides new commercializable separators toward dendrite-free LMBs.

摘要

商业聚烯烃分离膜在用于锂金属电池 (LMBs) 时可自由传输阴离子,这导致浓度极化和锂枝晶的快速生长,从而导致性能不佳和短路。在这里,制备了一种具有沿孔表面分布的功能活性位点(即羧基)的新型聚(乙烯-丙烯酸)(EAA)分离膜,在分离膜内形成仿生离子传导纳米通道。由于羧基有效地去溶剂化 Li 并固定阴离子,所制备的 EAA 分离膜选择性地加速 Li 的传输,迁移数 Li()高达 0.67,这通过分子动力学模拟进一步得到证实。具有 EAA 分离膜的电池可以在 5 mA cm 下稳定循环 500 h。具有 EAA 分离膜的 LMBs 在 5 C 下具有 107 mAh g 的出色电化学性能,在 200 次循环后容量保持率为 69%。这项工作为无枝晶 LMBs 提供了新的商业分离膜。

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