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Nanoscaled Lithium Powders with Protection of Ionic Liquid for Highly Stable Rechargeable Lithium Metal Batteries

机译:具有离子液体保护功能的纳米级锂粉用于高度稳定的可充电锂金属电池

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摘要

To suppress the dendrite formation and alleviate volume expansion upon striping/platting is a key challenge for developing practical lithium metal anodes. Lithium metal in powder form possesses great potential to address this issue due to large specific surface area. However, the fabrication of powdery metallic lithium is largely restricted because of its unique softness, stickiness, and high reactivity. Here, a safe and readily accessible cryomilling process toward lithium powders is reported. Nanoscaled lithium powders (<500 nm) are successfully prepared from lithium foils with the assistance of a high‐melting‐point ionic liquid under cryogenic temperature. The prepared lithium powder anode exhibits superior electrochemical properties in symmetric cells, including extraordinarily low yet stable overpotential (≈50 mV), ultrahigh area capacity (30 mAh cm ), and good long‐term cyclability (1200 h) even cycling at high current density (10 mA cm ). The powdery form of lithium also functions as a favorable prelithiation reagent for lithium‐free anodes (e.g., Si, SiO, and SnO ). The findings open up a new avenue for the real‐world application of lithium metal anodes for next‐generation lithium batteries.
机译:在开发实用的锂金属阳极时,抑制枝晶形成并减轻剥离/镀覆时的体积膨胀是关键挑战。由于大的比表面积,粉末状的锂金属具有解决这个问题的巨大潜力。然而,粉末状金属锂的制备由于其独特的柔软性,粘性和高反应性而受到很大限制。在此,报道了一种安全且易于使用的针对锂粉的低温研磨工艺。在低温下,借助高熔点离子液体,可以成功地从锂箔制备纳米级锂粉(<500 nm)。制备的锂粉阳极在对称电池中表现出优异的电化学性能,包括极低但稳定的过电势(≈50mV),超高面积容量(30 mAh cm)和良好的长期循环能力(1200 h),即使在高电流密度下循环(10 mA厘米)。锂的粉状形式还可以用作无锂阳极(例如Si,SiO和SnO)的良好预锂化剂。这些发现为在下一代锂电池中锂金属阳极的实际应用开辟了一条新途径。

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