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Coordinating ionic and electronic conductivity on 3D porous host enabling deep dense lithium deposition toward high-capacity lithium metal anodes

机译:协调 3D 多孔主体上的离子和电子电导率,实现向高容量锂金属阳极的深度致密锂沉积

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摘要

Engineering composite lithium (Li) metal within three-dimensional (3D) porous skeleton hosts is a feasible strategy to tackle issues of uncontrollable dendrite growth and enormous volume change on Li metal anodes. Nevertheless, the accumulative Li deposition on the top surface of the 3D skeleton remains a harsh challenge that still requires effort. Herein, we develop a rational design involving an enriched-sparse LiF gradient on a Cu foam via facile magnetron sputtering to coordinate ionic and electronic conductivity. The Li ion-conductive LiF gradient guides deep, dense Li deposition within the Cu foam framework, safely preventing surface Li accumulation. As a result, the Cu foam with optimal LiF sputtering time for 40 min (Cu foam/LiF(40)) renders the best synergy of ionic and electronic conduction. Such composite Li anode in the symmetric cell achieves an ultra-long lifespan up to 1700 h at the current density of 2 mA cm−2 with the capacity of 2 mA h cm−2. This work certifies the decisive significance of coordinating ionic and electronic conductivity for uniform Li deposition on 3D porous hosts and provides a simple and effective avenue to controllably deposit Li in suitable locations for long-term and high-capacity 3D Li metal anodes.
机译:工程复合锂(李)金属内三维(3 d)多孔骨架主机是一个可行的策略来解决问题无法控制的树突增长和巨大的体积变化对金属阳极。累计李在顶部表面沉积三维骨架的仍然是一个严酷的挑战仍然需要努力。合理的设计涉及enriched-sparse生活梯度泡沫铜通过灵巧的磁控管溅射离子和电子协调导电性。李指导深,密集的在铜沉积泡沫塑料框架,安全地防止表面积累。最优生活溅射时间40分钟(铜泡沫/生活(40)呈现最好的离子的协同作用和电子传导。对称的细胞达到一个阳极超长寿命1700 h在当前马2厘米−密度马2的能力2 h厘米−2。协调离子和电子的重要性电导率对3 d李均匀沉积多孔主机和提供了一个简单和有效的大道李可控存款合适为长期和李高容量的3 d位置金属阳极。

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