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Nanostructured Li-Rich Fluoride Coated by Ionic Liquid as High Ion-Conductivity Solid Electrolyte Additive to Suppress Dendrite Growth at Li Metal Anode

机译:由离子液体涂覆的纳米结构锂含有高离子导电性固体电解质添加剂,以抑制Li金属阳极的枝晶生长

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Blending additive with electrolyte is a facile and effective method to suppress anode dendrite growth in Li metal batteries (LMBs), especially when a LiF-rich solid electrolyte interface (SEI) is formed as a consequence of additive decomposition or deposition. However LiF still suffers from poor bulk ion conductivity as well as the difficult access to tailored nanostructure. Exploring new Li fluoride of high Li-ion conductivity as SEI component is still a big challenge in view of the lacking of desired structure prototype or mineral phase. Here, we propose a Li-rich Li(3)AIF(6) derivative from cryolite phase as solid electrolyte additive, which is characterized by textured nanoporous morphology and ionic liquid coating. Its room temperature ion conductivity is as high as similar to 10(-5) S/cm with a low activation energy of 0.29 eV, the best level among fluoride-based solid electrolytes. These features guarantee a homogenization of Li+ fluxing through bulk and grain boundary of Li3AlF6-rich SEI and reinforce the effect on Li dendrite suppression. Li(3)AIF(6) additive enables a stable cyclability of Li parallel to Li symmetric cells for at least 100 cycles even under a high areal capacity of 3 mA h/cm(2) and a significant improvement on capacity retention for various LMBs based on LiFePO4, FeS2, and S cathodes.
机译:用电解质混合添加剂是抑制Li金属电池(LMBS)的阳极枝晶生长的容易和有效的方法,尤其是当由于添加剂分解或沉积而形成Lif富含固体电解质界面(SEI)时。然而,LIF仍然存在较差的批量离子电导率以及难以定制的纳米结构。考虑到缺乏所需的结构原型或矿物相,探索高锂离子电导率的新锂氟化物仍然是一个很大的挑战。在此,我们提出了一种从氏氏氏晶阶段的富含Li(3)AIF(6)衍生物,作为固体电解质添加剂,其特征在于纹理纳米多孔形态和离子液体涂层。其室温离子电导率高于10(-5)S / cm,低激活能为0.29eV,氟化物基固体电解质中的最佳水平。这些特征能够通过Li3AlF6富含SEI的散装和晶界来保证Li +通量的均质化,并加强对Li枝晶抑制的影响。 Li(3)AIF(6)添加剂即使在3 mA H / cm(2)的高面积容量下也能够稳定与LI对称细胞的LI平行于LI对称细胞的可阻止性至少100次循环,并对各种LMB的能力保留有显着改善基于LifePO4,FES2和S阴极。

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