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Lithiophilic surface treatment of metal- and metallic compound-based frameworks by gas nitriding for lithium metal batteries

机译:锂金属电池气体氮化金属和金属化合物骨架的锂碘硅酸盐表面处理

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Metal-based frameworks are developed for lithium metal batteries due to their effective suppression of the lithium dendritic growth. However, the use of appealing metals such as copper (Cu), the best current collector in batteries, are still limited owing to lithiophobicity. Here, we report a facile lithiophilic surface treatment of metal- and metallic compound-based scaffolds via gas nitriding. Due to nitride anion (N3-) from ammonia (NH3) gas that can bond to almost all elements and form lithiophilic binary nitrides, the gas nitriding on a pristine Cu foam and a Cu(OH)(2) nanorods grown Cu foam results in a formation of lithiophilic Cu3N film on the surface without a noticeable structural change. After lithium melt infusion, symmetric cells assembled with two types of lithium hosts show stable structural stability and a smooth Li plating/stripping behavior without a dendritic growth of lithium. Particularly, a full cell test demonstrates that lithiated Cu3N nanomds grown Cu foam exhibits enhanced electrochemical performances including capacity, rate capability, and cycle performance compared to a bare Li foil. Our findings demonstrate the gas nitriding is a powerful tool for lithiophilic surface treatment of metals and metallic compounds with various dimensions and sizes from micro to nanoscale.
机译:由于它们有效地抑制了锂树枝状生长,因此为锂金属电池开发了基于金属的框架。然而,由于锂电侵蚀性,使用如铜(Cu),如铜(Cu),最佳集电器,最佳集电器,仍然有限。在这里,我们通过气体氮化报告了基于金属和金属化合物的支架的容易性锂电图处理。由于来自氨(NH 3)气体的氮化物阴离子(N 3-),可以粘合到几乎所有元素并形成锂硫酸二元氮化物,氮化气体在原始Cu泡沫和Cu(OH)(2)纳米棒上生长Cu泡沫导致在没有明显的结构变化的情况下形成锂硅霉Cu3N膜。在锂熔融输注后,用两种类型的锂宿主组装的对称电池显示出稳定的结构稳定性和平滑的Li电镀/剥离行为而没有锂的树突生长。特别地,全细胞试验表明锂化的Cu3N纳米可以生长的Cu泡沫表现出增强的电化学性能,包括与裸Li箔相比的容量,速率能力和循环性能。我们的研究结果证明了气体氮化是一种强大的岩性表面处理金属和金属化合物的强大工具,具有各种尺寸的金属化合物和从微量到纳米级尺寸的尺寸。

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