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Electron cloud migration effect-induced lithiophobicity/lithiophilicity transformation for dendrite-free lithium metal anodes

机译:电子云迁移effect-inducedlithiophobicity / lithiophilicity转换为dendrite-free锂金属阳极

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摘要

Enabling stable lithium metal anodes is significant for developing electrochemical energy storage systems with higher energy density. However, safety hazards, infinite volume expansion, and low coulombic efficiency (CE) of lithium metal anodes always hinder their practical application. Herein, a nano-thickness lithiophilic Cu-Ni bimetallic coating was synthesized to prepare dendrite-free lithium metal anodes. The electron cloud migration effect caused by the different electronegativities of Cu and Ni can achieve lithiophobicity/lithiophilicity transformation and thus promote uniform Li deposition/dissolution. By changing the ratio of Cu to Ni, the electron cloud migration can be reasonably adjusted for obtaining dendrite-free lithium anodes. As a result, the as-obtained Cu-Ni bimetallic coating is able to guarantee dendrite-free lithium metal anodes with a stable long cycling time (>1500 hours) and a small voltage hysteresis (similar to 26 mV). In addition, full cells with LiFePO4 as a cathode present excellent cycling stability and high coulombic efficiency. This work can open a new avenue for optimizing the lithiophilicity of materials and realizing dendrite-free anodes.
机译:使稳定的锂金属阳极对开发电化学能源具有重要意义存储系统具有更高的能量密度。然而,安全隐患,无限体积扩张,库仑效率低(CE)锂金属阳极总是阻碍他们实际的应用程序。lithiophilic Cu-Ni双金属涂层合成dendrite-free锂做准备金属阳极。造成不同的铜电负性和倪可以实现lithiophobicity / lithiophilicity转换从而促进统一沉积/解散。铜,镍,电子云迁移合理调整获得dendrite-free锂阳极。Cu-Ni双金属涂层能够保证dendrite-free金属锂阳极的稳定骑自行车时间长(> 1500小时)和一个小电压滞后(类似于26号)。,完整的细胞与磷酸铁锂阴极良好的循环稳定性和高库仑效率。优化的lithiophilicity的大道材料和实现dendrite-free阳极。

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