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用于锂离子电池中超稳定硅阳极的海绵状多孔导电聚合物涂层

Sponge-Like Porous-Conductive Polymer Coating for Ultrastable Silicon Anodes in Lithium-Ion Batteries.

作者信息

Yu Yuanyuan, Yang Chen, Jiang Yan, Zhu Jiadeng, Zhao Yingying, Liang Shuheng, Wang Kaixiang, Zhou Yulin, Liu Yuying, Zhang Junhua, Jiang Mengjin

机构信息

College of Polymer Science and Engineering, Sichuan University, Chengdu, 610065, China.

State Key Laboratory of Polymer Materials Engineering, Chengdu, 610065, China.

出版信息

Small. 2023 Nov;19(47):e2303779. doi: 10.1002/smll.202303779. Epub 2023 Jul 23.

Abstract

Urgent calls for reversible cycling performance of silicon (Si) requires an efficient solution to maintain the silicon-electrolyte interface stable. Herein, a conductive biphenyl-polyoxadiazole (bPOD) layer is coated on Si particles to enhance the electrochemical process and prolong the cells lifespan. The conformal bPOD coatings are mixed ionicelectronic conductors, which not only inhibit the infinite growth of solid electrolyte interphase (SEI) but also endow electrodes with outstanding ion/electrons transport capacity. The superior 3D porous structure in the continuous phase allows the bPOD layers to act like a sponge to buffer volume variation, resulting in high structural stability. The in situ polymerized bPOD coating and it-driven thin LiF-rich SEI layer remarkably improve the lithium storage performance of Si anodes, showing a high reversible specific capacity of 1600 mAh g even after 500 cycles at 1 A g along with excellent rate capacity of over 1500 mAh g at 3 A g . It should be noticed that a long cycle life of 800 cycles with 1065 mAh g at 3 A g can also be achieved with a capacity retention of more than 80%. Therefore,  we  believe this unique polymer coating design paves the way for the widespread adoption of next-generation lithium-ion batteries.

摘要

对硅(Si)可逆循环性能的迫切需求需要一种有效的解决方案来维持硅-电解质界面的稳定性。在此,在硅颗粒上涂覆一层导电联苯-聚恶二唑(bPOD)层,以增强电化学过程并延长电池寿命。保形的bPOD涂层是混合离子电子导体,它不仅抑制固体电解质界面(SEI)的无限生长,还赋予电极出色的离子/电子传输能力。连续相中优异的三维多孔结构使bPOD层起到海绵的作用来缓冲体积变化,从而具有高结构稳定性。原位聚合的bPOD涂层及其驱动的富含LiF的薄SEI层显著提高了硅阳极的锂存储性能,即使在1 A g下循环500次后仍显示出1600 mAh g的高可逆比容量,以及在3 A g下超过1500 mAh g的优异倍率容量。应该注意的是,在3 A g下也可以实现800次循环的长循环寿命,比容量为1065 mAh g,容量保持率超过80%。因此,我们相信这种独特的聚合物涂层设计为下一代锂离子电池的广泛应用铺平了道路。

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