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Stitching h-BN by atomic layer deposition of LiF as a stable interface for lithium metal anode

机译:通过LiF的原子层沉积缝合h-BN作为锂金属阳极的稳定界面

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Defects are important features in two-dimensional (2D) materials that have a strong influence on their chemical and physical properties. Through the enhanced chemical reactivity at defect sites (point defects, line defects, etc.), one can selectively functionalize 2D materials via chemical reactions and thereby tune their physical properties. We demonstrate the selective atomic layer deposition of LiF on defect sites of h-BN prepared by chemical vapor deposition. The LiF deposits primarily on the line and point defects of h-BN, thereby creating seams that hold the h-BN crystallites together. The chemically and mechanically stable hybrid LiF/h-BN film successfully suppresses lithium dendrite formation during both the initial electrochemical deposition onto a copper foil and the subsequent cycling. The protected lithium electrodes exhibit good cycling behavior with more than 300 cycles at relatively high coulombic efficiency (>95%) in an additive-free carbonate electrolyte.
机译:缺陷是二维(2D)材料中的重要特征,这些特征对其化学和物理特性有很大的影响。通过提高缺陷部位(点缺陷,线缺陷等)的化学反应性,人们可以通过化学反应选择性地对2D材料进行功能化,从而调节其物理性质。我们展示了通过化学气相沉积制备的h-BN缺陷部位上LiF的选择性原子层沉积。 LiF主要沉积在h-BN的线和点缺陷上,从而形成将h-BN晶体保持在一起的接缝。化学和机械稳定的混合LiF / h-BN膜在初始电化学沉积到铜箔上和随后的循环过程中均成功地抑制了锂枝晶的形成。在无添加剂的碳酸盐电解质中,受保护的锂电极在相对较高的库仑效率(> 95%)下具有超过300个循环的良好循环行为。

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