Han Mingrui, Liu Gaofeng, Jiang Jinlong, Lu Shangying, Jiang Yong, Liu Yiqian, Zhao Bing, Zhang Jiujun
School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.
Institute for Sustainable Energy/College of Sciences, Shanghai University, Shanghai 200444, China.
ACS Appl Mater Interfaces. 2021 Oct 20;13(41):48828-48837. doi: 10.1021/acsami.1c14889. Epub 2021 Oct 10.
Uncontrollable formation of Li dendrites and volume expansion have always been serious obstacles to the practical application of Li metal anodes. Three-dimensional (3D) frameworks are proven to accommodate Li to suppress volume expansion, but the lithiophobic surface tends to cause uncontrollable formation of Li dendrites. Here, uniform SnS nanosheets are coated on the carbon paper (SnS@CP) skeleton and then transformed into a mixed layer of LiS/Li-Sn after lithiation. Under the joint action of the lithiophilic Li-Sn alloy and low-diffusion energy barrier LiS, the dual effects of strong adsorption and rapid diffusion of Li are realized. As a result, Li deposits homogeneously within the whole framework; as the plating amount increases, dendrite-free spherical Li is demonstrated, and the thickness of the electrode stays almost unchanged even at a high areal capacity of 10 mA h cm. The SnS@CP electrodes present an ultralow nucleation overpotential (ca. 4 mV), high Coulombic efficiency (above 96.6% for more than 450 cycles), and stable cycle life (>1500 h), indicating that the 3D framework with the LiS/Li-Sn alloy mixed coating has excellent lithiophilicity and fast Li transport kinetics, thus effectively inhibiting the formation of Li dendrites. All the findings give new insights into the design strategy for stable and safe Li metal anodes.
锂枝晶的不可控形成和体积膨胀一直是锂金属负极实际应用的严重障碍。三维(3D)框架已被证明可容纳锂以抑制体积膨胀,但疏锂表面往往会导致锂枝晶的不可控形成。在此,将均匀的SnS纳米片涂覆在碳纸(SnS@CP)骨架上,然后在锂化后转变为LiS/Li-Sn混合层。在亲锂的Li-Sn合金和低扩散能垒LiS的共同作用下,实现了锂的强吸附和快速扩散的双重效果。结果,锂在整个框架内均匀沉积;随着镀锂量的增加,展示出无枝晶的球形锂,即使在10 mA h cm的高面积容量下,电极厚度也几乎保持不变。SnS@CP电极呈现出超低的成核过电位(约4 mV)、高库仑效率(超过450次循环时高于96.6%)和稳定的循环寿命(>1500 h),表明具有LiS/Li-Sn合金混合涂层的3D框架具有优异的亲锂性和快速的锂传输动力学,从而有效地抑制了锂枝晶的形成。所有这些发现为稳定安全的锂金属负极的设计策略提供了新的见解。