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通过高能金属有机框架的一步碳化制备用于无枝晶锂金属负极的3D亲锂主体。

A 3D Lithiophilic Host for Dendrite-Free Lithium Metal Anode via One-Step Carbonization of an Energetic Metal-Organic Framework.

作者信息

Song Manrong, Li Yang, Gao Lei, Zhao Ruo, Xu Yifan, Han Songbai, Zhu Jinlong, Wang Liping, Zhao Yusheng

机构信息

Institute for Advanced Study, Shenzhen University, Shenzhen, 518055, China.

Guangdong Provincial Key Laboratory of Energy Materials for Electric Power, Guangdong-Hong Kong-Macao Joint Laboratory for Photonic-Thermal-Electrical Energy Materials and Devices, Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology, Shenzhen, 518055, China.

出版信息

Small. 2024 Mar;20(9):e2306187. doi: 10.1002/smll.202306187. Epub 2023 Oct 19.

Abstract

Low Coulombic efficiency (CE) and safety issues are huge problems that hinder the practical application of Li metal anodes. Constructing Li host structures decorated with functional species can restrain the growth of Li dendrites and alleviate the great volume change. Here, a 3D porous carbonaceous skeleton modified with rich lithiophilic groups (Zn, ZnO, and Zn(CN) ) is synthesized as a Li host via one-step carbonization of a triazole-containing metal-organic framework. The nano lithiophilic groups serve as preferred sites for Li nucleation and growth, regulating a uniform Li flux and uniform current density distribution. In addition, the 3D porous network functions as a Li reservoir that provides rich internal space to store Li, thus alleviating the volumetric expansion during Li plating/stripping process. Thanks to these component and structural merits, an ultra-low overpotential for Li deposition is achieved, together with high CE of over 99.5% for more than 500 cycles at 1 mA cm and 1 mAh cm in half cells. The symmetric cells exhibit a prolonged cycling of 900 h at 1 mA cm . The full cells by coupling Zn/ZnO/Zn(CN) @C-Li anode with LiFePO cathode deliver a high capacity retention of 94.3% after 200 cycles at 1 C.

摘要

低库仑效率(CE)和安全问题是阻碍锂金属负极实际应用的巨大难题。构建由功能物种修饰的锂宿主结构可以抑制锂枝晶的生长并缓解巨大的体积变化。在此,通过含三唑的金属有机框架的一步碳化合成了一种用富含亲锂基团(Zn、ZnO和Zn(CN))修饰的三维多孔碳质骨架作为锂宿主。纳米亲锂基团作为锂成核和生长的优先位点,调节均匀的锂通量和均匀的电流密度分布。此外,三维多孔网络充当锂储存库,提供丰富的内部空间来储存锂,从而缓解锂电镀/剥离过程中的体积膨胀。得益于这些组分和结构优点,实现了超低的锂沉积过电位,并且在半电池中,在1 mA cm和1 mAh cm下超过500次循环时CE高达99.5%以上。对称电池在1 mA cm下表现出900 h的延长循环。通过将Zn/ZnO/Zn(CN)@C-Li负极与LiFePO正极耦合的全电池在1 C下200次循环后具有94.3%的高容量保持率。

相似文献

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Three-Dimensional Superlithiophilic Interphase for Dendrite-Free Lithium Metal Anodes.用于无枝晶锂金属阳极的三维超亲锂界面
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