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A 3D-mixed ion/electron conducting scaffold prepared by in situ conversion for long-life lithium metal anodes

机译:3 d-mixed离子/电子导电支架由原位转化为长寿命锂金属阳极

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摘要

Lithium (Li) metal is widely considered the most promising anode material because of its ultrahigh specific energy. However, the obvious volume change and uncontrollable dendrite growth hinder its commercial applications. Herein, we designed a 3D scaffold of Cu3P nanoarray-modified Cu foam via in situ conversion (3D MIECS). Uniform lithiophilic Cu3P nanoarrays were in situ grown inside the Cu foam (Cu3P NA@CF) that presented a high specific surface area and very low nucleation overpotential. Specifically, the lithiated Cu3P nanoarrays possess the features of mixed ion/electron conductivity and structural stability responsible for uniform Li deposition in the whole three-dimensional space of the metal skeleton, showing scarcely any volume expansion or structural collapse during the continuous Li plating/stripping process. Therefore, the modified Cu foam host achieves dendrite-free cycling over 600 cycles at a current density of 3 mA cm(-2) with a coulombic efficiency (CE) of 99.1%. A 3D MIECS-Li||LiFePO4 full cell holds a capacity retention of 80% with a stable CE of 99.63% over 1000 cycles at 3 C.
机译:(李)锂金属被公认为最有前途的阳极材料由于其超高特定的能量。变化和不可控的树突增长阻碍其商业应用程序。的3 d支架Cu3P nanoarray-modified铜泡沫通过原位转化(3 d MIECS)。lithiophilic Cu3P原位生长纳米阵列在泡沫铜(Cu3P NA@CF)了高的比表面积和非常低成核过电压。lithiated Cu3P纳米阵列具有的特点混合离子/电子电导率和结构李稳定负责统一的沉积在整个三维空间的金属骨架,显示几乎没有体积膨胀在连续李或结构崩溃电镀/剥离过程。泡沫铜主机实现dendrite-free修改骑自行车超过600周期的电流密度3马厘米(2)电池的库伦效率(CE)99.1%。能力保留80%的稳定CE99.63% 1000周期在3 C。

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