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Avoiding dendrite formation by confining lithium deposition underneath Li-Sn coatings

机译:通过在Li-Sn涂层下限沉积锂沉积来避免枝晶形成

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摘要

The use of interfacial layers to stabilize the lithium surface is a popular research direction for improving the morphology of deposited lithium and suppressing lithium dendrite formation. This work considers a different approach to controlling dendrite formation where lithium is plated underneath an interfacial coating. In the present research, a Li-Sn intermetallic was chosen as a model system due to its lithium-rich intermetallic phases and high Li diffusivity. These coatings also exhibit a significantly higher Li exchange current than bare Li thus leading to better charge transfer kinetics. The exchange current is instrumental in determining whether lithium deposition occurs above or below the Li-Sn coating. High-resolution transmission electron microscopy and cryogenic focused ion beam scanning electron microscopy were used to identify the features associated with Li deposition. Atomic scale simulations provide insight as to the adsorption energies determining the deposition of lithium below the Li-Sn coating.
机译:界面层稳定锂表面是一种流行的研究方向,用于改善沉积锂和抑制锂枝晶形成的形态。这项工作考虑了控制硅铁地层的不同方法,其中镀锂在界面涂层下方镀下。在本研究中,由于其富含锂的金属间相和高锂扩散率,选择了一种Li-Sn金属间体作为模型系统。这些涂层也表现出明显高于裸Li的锂交换电流,从而导致更好的电荷转移动力学。交换电流在确定是否在Li-Sn涂层上方或下方确定锂沉积是否发生。高分辨率透射电子显微镜和低温聚焦离子束扫描电子显微镜用于识别与LI沉积相关的特征。原子尺度模拟提供了关于吸附能量确定Li-Sn涂层以下锂沉积的吸附能的洞察。

著录项

  • 来源
    《Journal of Materials Research》 |2021年第4期|797-811|共15页
  • 作者单位

    Department of Materials Science and Engineering University of California Los Angeles CA 90095 USA;

    Department of Nanoengineering University of California San Diego La Jolla CA 92093 USA;

    Department of Chemistry and Biochemistry University of California Los Angeles CA 90095 USA Institute of Process Engineering Chinese Academy of Sciences Beijing 100190 People's Republic of China;

    Department of Chemistry and Biochemistry University of California Los Angeles CA 90095 USA;

    Department of Materials Science and Engineering University of California Los Angeles CA 90095 USA;

    Department of Chemistry and Biochemistry University of California Los Angeles CA 90095 USA Department of Chemical and Biomolecular Engineering University of California Los Angeles CA 90095 USA;

    Department of Nanoengineering University of California San Diego La Jolla CA 92093 USA Program of Materials Science and Engineering University of California San Diego La Jolla CA 92093 USA;

    Department of Materials Science and Engineering University of California Los Angeles CA 90095 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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