首页> 外文期刊>Advanced energy materials >'Top-Down' Li Deposition Pathway Enabled by an Asymmetric Design for Li Composite Electrode
【24h】

'Top-Down' Li Deposition Pathway Enabled by an Asymmetric Design for Li Composite Electrode

机译:锂复合电极的非对称设计实现“自上而下”的锂沉积途径

获取原文
获取原文并翻译 | 示例
           

摘要

Designing Li composite electrodes with host frameworks for accommodating Li metal has been considered to be an effective approach to suppress Li dendrites. Herein, an asymmetric design of a Mo net/Li metal film (MLF) composite electrode is developed by an inverted thermal infusion method. The asymmetric MLF electrode has a dense oxide passivated layer on the top side, a porous Mo net matrix on the back side, and active Li layer in between. The back side has a larger specific area and higher electric field than the top side, which contacts with the separator upon cycling, triggering the preferred Li deposition and stripping of the porous back side of the electrode far from the separator. The surface passivation layer on the top side of the electrode as an artificial solid electrolyte interphase ensures the stable contact with the electrolyte and separator. Meanwhile, the porous structure of the supporting Mo net provides enough space for accommodating the volume change during Li deposition and stripping. This asymmetry design enables a unique "top down" growth pathway for Li deposition in the MLF electrode, suppressing the dendrite growth effectively. The design strategy provides a new direction for high-energy dendrite-free Li metal anodes.
机译:设计具有用于容纳锂金属的主体框架的锂复合电极被认为是抑制锂枝晶的有效方法。在此,通过反向热注入法开发了Mo net / Li金属膜(MLF)复合电极的不对称设计。非对称MLF电极在顶侧具有致密的氧化物钝化层,在反侧具有多孔的Mo net基体,并在两者之间具有有源Li层。背面具有比顶面更大的比面积和更高的电场,该顶面在循环时与隔板接触,从而触发了优选的Li沉积,并剥离了远离隔板的电极的多孔背面。电极顶部的表面钝化层作为人造固体电解质的中间相,可确保与电解质和隔膜的稳定接触。同时,支撑Mo网的多孔结构提供了足够的空间以适应Li沉积和汽提期间的体积变化。这种不对称设计为MLF电极中的Li沉积提供了独特的“自顶向下”生长路径,从而有效地抑制了树枝状晶体的生长。该设计策略为无高能枝晶的锂金属阳极提供了新的方向。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号