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Stable Li Metal Anode Enabled by Space Confinement and Uniform Curvature through Lithiophilic Nanotube Arrays

机译:通过Lithiophilic纳米管阵列的空间限制和均匀曲率实现的稳定锂金属阳极

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The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li dendrite growth on the metal's surface, which leads to shortened cycle life and safety concerns. Herein, well-spaced nanotubes with ultrauniform surface curvature are introduced as a Li metal anode structure. The ultrauniform nanotubular surface generates uniform local electric fields that evenly attract Li-ions to the surface, thereby inducing even current density distribution. Moreover, the well-defined nanotube spacing offers Li diffusion pathways to the electroactive areas as well as the confined spaces to host deposited Li. These structural attributes create a unique electrodeposition manner; i.e., Li metal homogenously deposits on the nanotubular wall, causing each Li nanotube to grow in circumference without obvious sign of dendritic formation. Thus, the full-cell battery with the spaced Li nanotubes exhibits a high specific capacity of 132 mA h g(-1) at 1 C and an excellent coulombic efficiency of approximate to 99.85% over 400 cycles.
机译:锂(Li)金属阳极在可充电电池中的应用主要受到金属表面上Li树枝状晶体生长的限制,这导致缩短的循环寿命和安全性问题。在此,引入具有超均匀表面曲率的间隔良好的纳米管作为锂金属阳极结构。超均匀的纳米管表面产生均匀的局部电场,均匀地将锂离子吸引到表面,从而产生均匀的电流密度分布。此外,定义明确的纳米管间距为电活性区域提供了Li扩散途径,并为容纳沉积的Li提供了有限的空间。这些结构属性创造了独特的电沉积方式。即,Li金属均匀地沉积在纳米管壁上,导致每个Li纳米管在圆周上生长而没有明显的树突形成迹象。因此,具有间隔开的Li纳米管的全电池在1 C时具有132 mA h g(-1)的高比容量,并且在400个循环中具有大约99.85%的出色库仑效率。

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