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Fast-charging high-energy lithium-ion batteries via implantation of amorphous silicon nanolayer in edge-plane activated graphite anodes

机译:通过在边缘平面活化石墨阳极中注入非晶硅纳米层快速充电的高能锂离子电池

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摘要

As fast-charging lithium-ion batteries turn into increasingly important components in forthcoming applications, various strategies have been devoted to the development of high-rate anodes. However, despite vigorous efforts, the low initial Coulombic efficiency and poor volumetric energy density with insufficient electrode conditions remain critical challenges that have to be addressed. Herein, we demonstrate a hybrid anode via incorporation of a uniformly implanted amorphous silicon nanolayer and edge-site-activated graphite. This architecture succeeds in improving lithium ion transport and minimizing initial capacity losses even with increase in energy density. As a result, the hybrid anode exhibits an exceptional initial Coulombic efficiency (93.8%) and predominant fast-charging behavior with industrial electrode conditions. As a result, a full-cell demonstrates a higher energy density (≥1060 Wh l−1) without any trace of lithium plating at a harsh charging current density (10.2 mA cm−2) and 1.5 times faster charging than that of conventional graphite.
机译:随着快速充电的锂离子电池在即将出现的应用中变成越来越重要的组件,各种策略已致力于开发高倍率阳极。然而,尽管付出了巨大的努力,但是低库仑效率低和体积能量密度差以及电极条件不足仍然是必须解决的关键挑战。在这里,我们通过掺入均匀注入的非晶硅纳米层和边缘位点活化的石墨,证明了混合阳极。即使增加能量密度,该体系结构也能够成功改善锂离子的传输并最大程度地减少初始容量损失。结果,在工业电极条件下,混合阳极表现出出色的初始库仑效率(93.8%)和主要的快速充电性能。结果,充满电的电池在较高的充电电流密度(10.2 mAscm −2 <时)表现出更高的能量密度(≥1060Wh l -1 ),而没有任何镀锂痕迹。 / sup>),充电速度是传统石墨的1.5倍。

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