首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Uniform titanium nitride decorated Cu foams by electrophoretic deposition for stable lithium metal anodes
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Uniform titanium nitride decorated Cu foams by electrophoretic deposition for stable lithium metal anodes

机译:通过稳定锂金属阳极电泳沉积均匀氮化钛用电泳沉积装饰Cu泡沫

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Metallic Li, with ultrahigh theoretical capacity (3860 mA h g(-1)) and the lowest electrochemical potential (-3.04 V vs. the standard hydrogen electrode), is perfectly meet the needs of high energy density lithium batteries. However, the direct use of metallic lithium as anode would cause serious dendrite and huge volume expansion, which will bring safety hazards and restrict the practical commercialization of Li metal anodes. Herein, a facile electrophoretic deposition (EPD) method was employed for the first time to fabricate uniform TiN modified commercial Cu foam (TiN@Cu foam) as the lithiophilic 3D conductive skeleton. The lithiophilic TiN acts as the well-distributed seeds to promote the uniform lithium deposition, attributing to the lowed nucleation overpotential. The porous and conductive Cu foams can further mitigate the formation of Li dendrites, on account of its high specific surface area reduce the effective current density. The TiN@Cu foam based half cells and symmetric cells both exhibit improved reversibility and reduced polarization voltage in lithium plating/stripping process. Furthermore, better rate performance and cycling stability were also achieved in the full-cell configurations of TiN@Cu foam-Li/Li4Ti5O12 (LTO) and TiN@Cu foam-Li/LiFePO4 (LFP). This work demonstrates a facile strategy to modify the commercial current collectors with pre-synthesized lithiophilic nanoparticles for achieving uniform Li deposition. (C) 2021 Published by Elsevier B.V.
机译:金属锂具有超高的理论容量(3860 mA h g(-1))和最低的电化学电位(与标准氢电极相比为3.04 V),完全可以满足高能量密度锂电池的需求。然而,直接使用金属锂作为阳极会导致严重的枝晶和巨大的体积膨胀,这将带来安全隐患,并限制金属锂阳极的实际商业化。本文首次采用简易电泳沉积(EPD)方法制备了均匀的锡改性商业铜泡沫(TiN@Cu泡沫)作为亲锂3D导电骨架。由于成核过电位降低,亲锂锡作为均匀分布的种子促进锂的均匀沉积。多孔导电铜泡沫塑料的高比表面积降低了有效电流密度,因此可以进一步减少锂树枝晶的形成。这个TiN@Cu泡沫半电池和对称电池在锂电镀/剥离过程中都表现出改善的可逆性和降低的极化电压。此外,在全电池配置下,还实现了更好的速率性能和循环稳定性TiN@Cu泡沫Li/Li4Ti5O12(LTO)和TiN@Cu泡沫Li/LiFePO4(LFP)。这项工作展示了一种简单的策略,即使用预合成的亲锂纳米颗粒对商业集电器进行修饰,以实现均匀的锂沉积。(c)2021由爱思唯尔B.V出版。

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