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用于无枝晶锂金属电极的3D集流体中的内置稳定亲锂位点

Built-In Stable Lithiophilic Sites in 3D Current Collectors for Dendrite Free Li Metal Electrode.

作者信息

Wang Jiang-Peng, Lan Dan-Ni, Chen Guo-Yin, Hu Xi-Tao, Lin Chao, Li Quan

机构信息

Department of Physics, The Chinese University of Hong Kong, New Territory, Hong Kong, China.

College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.

出版信息

Small. 2022 Jul;18(27):e2106718. doi: 10.1002/smll.202106718. Epub 2022 Jun 9.

DOI:10.1002/smll.202106718
PMID:35678595
Abstract

Stable lithiophilic sites in 3D current collectors are the key to guiding the uniform Li deposition and thus suppressing the Li dendrite growth, but such sites created by the conventional surface decoration method are easy to be consumed along with cycling. In this work, carbon fiber (CF)-based 3D porous networks with built-in lithiophilic sites that are stable upon cycling are demonstrated. Such heterostructured architecture is constructed by the introduction of zeolitic imidazolate framework-8-based nanoparticles during the formation of the 3D fibrous carbonaceous network and the following annealing. The introduced Zn species are found to be re-distributed along the entire individual CF in the 3D network, and function as lithiophilic sites that favor the homogenous lithium nucleation and growth. The 3D network also presents a multi-scale porous structure that improves the space utilization of the host. The corresponding symmetric cells adopting such 3D anode demonstrate excellent cycling performance, especially at a high rate (300 cycles at 10 mA cm with a capacity of 5 mA h cm ). A full cell with LiFePO cathode shows a capacity retention of 98% after cycling at 1C for 300 cycles. This method provides an effective design strategy for 3D hosting electrodes in dendrite-free alkali metal anode applications.

摘要

三维集流体中稳定的亲锂位点是引导锂均匀沉积从而抑制锂枝晶生长的关键,但通过传统表面修饰方法创建的此类位点容易在循环过程中被消耗。在这项工作中,展示了具有在循环过程中稳定的内置亲锂位点的基于碳纤维(CF)的三维多孔网络。这种异质结构是通过在三维纤维状碳质网络形成过程中引入基于沸石咪唑酯骨架-8的纳米颗粒并随后进行退火而构建的。发现引入的锌物种在三维网络中沿着整个单个碳纤维重新分布,并作为有利于锂均匀成核和生长的亲锂位点发挥作用。三维网络还呈现出多尺度多孔结构,提高了主体的空间利用率。采用这种三维阳极的相应对称电池表现出优异的循环性能,特别是在高电流密度下(在10 mA cm² 下循环300次,容量为5 mA h cm²)。具有磷酸铁锂阴极的全电池在1C下循环300次后容量保持率为98%。该方法为无枝晶碱金属阳极应用中的三维主体电极提供了一种有效的设计策略。

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