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用于高性能锂金属电池的3D冠醚共价有机框架作为界面层

3D Crown Ether Covalent Organic Framework as Interphase Layer toward High-Performance Lithium Metal Batteries.

作者信息

Zheng Shuang, Bi Shuai, Fu Yubin, Wu Yang, Liu Minghao, Xu Qing, Zeng Gaofeng

机构信息

CAS Key Laboratory of Low-Carbon Conversion Science and Engineering, Shanghai Advanced Research Institute (SARI), Chinese Academy of Sciences (CAS), Shanghai, 201210, P. R. China.

School of Chemical Engineering, University of Chinese Academy of Sciences, 19A Yuquan Road, Beijing, 100049, P. R. China.

出版信息

Adv Mater. 2024 May;36(21):e2313076. doi: 10.1002/adma.202313076. Epub 2024 Feb 16.

Abstract

The practical application of lithium (Li) metal batteries is inhibited by accumulative Li dendrites and continuous active Li consumption during cycling, which results in a low Coulombic efficiency and short lifetime. Constructing artificial solid-electrolyte interphase (SEI) layer in Li anode, such as 2D covalent organic frameworks (COFs), is an effective strategy to restrain the formation of Li dendrites and improve cycling performance. However, the exploration of 3D COFs as protecting layers is rarely reported, because of the preconception that the interconnect pores in 3D COFs eventually cause Li dendrites in disordered direction. 3D crown ether-based COF with ffc topology as interphase layer, in which the crown ether units are arranged in parallel and vertical orientation along the electrode, is demonstrated. The strong coupling effect between the crown ether and Li accelerates Li diffusion kinetics and enables homogeneous Li flux, resulting in a high Li transference number of 0.85 and smooth Li deposition in 3D direction. Li/COF-Cu cells display a lower Li-nucleation overpotential (17.4 mV) and high average Coulombic efficiency of ≈98.6% during 340 cycles with COF incorporation. This work gives a new insight into designing COFs for energy storage systems.

摘要

锂(Li)金属电池的实际应用受到循环过程中累积的锂枝晶和持续的活性锂消耗的抑制,这导致库仑效率低和寿命短。在锂阳极中构建人工固体电解质界面(SEI)层,如二维共价有机框架(COF),是抑制锂枝晶形成和改善循环性能的有效策略。然而,由于人们预先认为三维COF中的互连孔最终会导致锂枝晶无序生长,因此很少有关于将三维COF用作保护层的研究报道。本文展示了一种具有ffc拓扑结构的三维冠醚基COF作为界面层,其中冠醚单元沿电极呈平行和垂直取向排列。冠醚与锂之间的强耦合效应加速了锂的扩散动力学,并实现了均匀的锂通量,从而在三维方向上实现了0.85的高锂迁移数和锂的平滑沉积。含COF的锂/COF-Cu电池在340次循环中显示出较低的锂成核过电位(17.4 mV)和≈98.6%的高平均库仑效率。这项工作为储能系统中COF的设计提供了新的思路。

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