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Effects of a nanometrically formed lithiophilic silver@copper current collector on the electrochemical nucleation and growth behaviors of lithium metal anodes

机译:纳米型锂磷酸盐@铜集电体对锂金属阳极电化学成核和生长行为的影响

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Herein, we study the effects of a nanometrically uniform array of Ag nanoparticles (AgNPs) on the electrochemical nucleation and electrodeposition behavior of Li metal anodes (LMAs). The AgNP array is grown directly on the surface of commercial planar Cu current collectors (CCs) using a thermal evaporation system by limiting the growth of Ag thin films to an island stage. When the film is grown to an evaporation thickness of 3 nm, AgNPs with an average diameter of 11.4 nm are uniformly formed on the surface of Cu CCs. On the electrochemical nucleation of Li, the uniformly distributed AgNPs effectively provide nucleation sites for Li deposition and hence increase the nuclei density and spatial uniformity and decrease the size of the nuclei and nucleation overpotential. As a result, a dendrite-free, dense and pebble-like morphology of Li deposits is formed, and a high Coulombic efficiency (CE) of 98.5% is obtained during 100 cycles of the repeated electrodeposition and stripping of Li at a current density of 0.5 mA cm(-2) for 1 mAh cm(-2). In contrast, the cycle life of pristine Cu is limited to the 83rd cycle in the same testing environment.
机译:在此,我们研究了Ag纳米颗粒(AgNP)的纳米型均匀阵列对Li金属阳极(LMA)的电化学成核和电沉积行为的影响。通过将Ag薄膜的生长限制在岛阶段,使用热蒸发系统直接在商业平面Cu集电器(CCS)的表面上直接生长。当薄膜生长到蒸发厚度为3nm时,在Cu CC的表面上均匀地形成平均直径为11.4nm的AgNP。在Li的电化学成核上,均匀分布的agnps有效地提供了Li沉积的成核位点,因此提高了核密度和空间均匀性,并降低了核和成核的核心的大小。结果,形成了Li沉积物的树枝状,致密和卵石状形态,并且在100个重复电沉积的100个循环中获得了98.5%的高库仑效率(Ce),并以电流密度0.5 mA cm(-2)1 mah cm(-2)。相反,原始Cu的循环寿命限于相同测试环境中的第83个循环。

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