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Natural Template-Derived 3D Porous Current Collector for Dendrite-free Lithium Metal Battery

机译:用于树突式锂金属电池的天然模板衍生的3D多孔集电器

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Metallic lithium (Li) is an outstanding anode for high-energy storage devices, but dendrite growth impedes its practical application. Herein, similar to molding process of mooncake, a facile strategy of templated etching has been developed to manufacture three dimensional (3D) current collectors with hierarchical pore structures and biomimetic surfaces derived from natural templates. By using polydimethylsiloxane (PDMS) as duplicate templates, 3D surface morphologies of natural surfaces can be printed on Cu foil, and the resuable templates facilitate mass production. By comparison, the 3D porous current collectors largely improve Li deposition behavior and suppress dendrite growth. They exhibit excellent electrochemical performances: high Coulombic efficiency (CE), long life spans of more than 1000 h and good cycling performance. The templated etching method overcomes the energy/time-consuming disadvantages of past pore-creating methods and will boost the commercialization of lithium metal batteries.
机译:金属锂(​​LI)是高储能器件的突出阳极,但枝晶生长阻碍了其实际应用。这里,类似于月饼的模制过程,已经开发了一种模板蚀刻的容易策略,用于制造具有分层孔结构的三维(3D)集电器和源自天然模板的仿生表面。通过使用聚二甲基硅氧烷(PDMS)作为重复模板,可以在Cu箔上印刷天然表面的3D表面形态,并且可以促进批量生产。相比之下,3D多孔电流收集器在很大程度上改善了Li沉积行为,抑制了树突生长。它们表现出优异的电化学性能:高库仑效率(CE),寿命长度超过1000小时和良好的循环性能。模板蚀刻方法克服了过去孔隙创造方法的能量/耗时缺点,并将提高锂金属电池的商业化。

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