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用于无枝晶锂金属负极的离子再分配器。

An ion redistributor for dendrite-free lithium metal anodes.

作者信息

Zhao Chen-Zi, Chen Peng-Yu, Zhang Rui, Chen Xiang, Li Bo-Quan, Zhang Xue-Qiang, Cheng Xin-Bing, Zhang Qiang

机构信息

Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Sci Adv. 2018 Nov 9;4(11):eaat3446. doi: 10.1126/sciadv.aat3446. eCollection 2018 Nov.

Abstract

Lithium (Li) metal anodes have attracted considerable interest due to their ultrahigh theoretical gravimetric capacity and very low redox potential. However, the issues of nonuniform lithium deposits (dendritic Li) during cycling are hindering the practical applications of Li metal batteries. Herein, we propose a concept of ion redistributors to eliminate dendrites by redistributing Li ions with Al-doped LiLaZrTaO (LLZTO) coated polypropylene (PP) separators. The LLZTO with three-dimensional ion channels can act as a redistributor to regulate the movement of Li ions, delivering a uniform Li ion distribution for dendrite-free Li deposition. The standard deviation of ion concentration beneath the LLZTO composite separator is 13 times less than that beneath the routine PP separator. A Coulombic efficiency larger than 98% over 450 cycles is achieved in a Li | Cu cell with the LLZTO-coated separator. This approach enables a high specific capacity of 140 mAh g for LiFePO | Li pouch cells and prolonged cycle life span of 800 hours for Li | Li pouch cells, respectively. This strategy is facile and efficient in regulating Li-ion deposition by separator modifications and is a universal method to protect alkali metal anodes in rechargeable batteries.

摘要

锂(Li)金属阳极因其超高的理论重量容量和极低的氧化还原电位而备受关注。然而,循环过程中锂沉积不均匀(树枝状锂)的问题阻碍了锂金属电池的实际应用。在此,我们提出了一种离子再分配器的概念,通过用铝掺杂的LiLaZrTaO(LLZTO)涂层聚丙烯(PP)隔膜重新分配锂离子来消除枝晶。具有三维离子通道的LLZTO可以作为再分配器来调节锂离子的移动,为无枝晶锂沉积提供均匀的锂离子分布。LLZTO复合隔膜下方离子浓度的标准偏差比常规PP隔膜下方小13倍。在使用LLZTO涂层隔膜的Li|Cu电池中,450次循环内库仑效率大于98%。这种方法分别使LiFePO|Li软包电池具有140 mAh g的高比容量,以及Li|Li软包电池具有800小时的延长循环寿命。该策略通过隔膜改性来调节锂离子沉积既简便又有效,是保护可充电电池中碱金属阳极的通用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd3b/6226285/4c3faf31a99a/aat3446-F1.jpg

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