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Dual Lithiophilic Structure for Uniform Li Deposition

机译:双锂硅基结构,用于均匀锂沉积

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The development of Li metal anodes is hindered by the Li dendrites arising from the random deposition of Li metal during cycles. Hence, uniform deposition of Li during repeated cycles is crucial for the development of Li metal batteries. However, it is difficult to regulate Li deposition because of convection in the electrolyte. Here, we employ a dual lithiophilic structure composed of a polar metal organic framework (MOF) and highly conductive Ag nanoparticles, and we show that it brings about uniform lithium deposition. The binding energy for Li is increased by the abundant oxygen sites and large surface area of the MOF, and concomitantly, the uniform distribution of Li nuclei can be achieved with a low nucleation overpotential. When highly conductive lithiophilic Ag is incorporated into the MOF, the binding energy for Li is further increased and the nucleation overpotential is decreased to nearly zero. As a result, Li platting and stripping on the Ag@MOF (i.e., Ag@HKUST-1) substrate exhibit a Coulombic efficiency of 97% over 300 cycles and a high areal capacity of 5 mA h cm(-2) without dendrite formation.
机译:Li金属阳极的发展受到循环期间Li金属的随机沉积产生的Li枝晶的阻碍。因此,在重复循环期间Li的均匀沉积对于Li金属电池的开发至关重要。然而,由于电解质中的对流,难以调节LI沉积。这里,我们采用由极性金属有机骨架(MOF)和高导电Ag纳米颗粒组成的双锂硅基结构,并且我们表明它带来了均匀的锂沉积。 Li的结合能量由丰富的氧气位点和MOF的大表面积增加,并且伴随着,Li核的均匀分布可以通过低核的过电位来实现。当高导电锂硅基AG掺入MOF中时,Li的结合能量进一步增加,并且核心过电位降低到差。结果,锂平板和剥离Ag @ Mof(即,Ag @ HKust-1)衬底具有97%超过300次循环的库仑效率,并且具有5mA H cm(-2)的高面积容量而没有树突式形成。

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