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Engineering d-p Orbital Hybridization in Single-Atom Metal-Embedded Three-Dimensional Electrodes for Li-S Batteries

机译:Li-S电池单原子金属嵌入式三维电极的工程D-P轨道杂交

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摘要

Single-atom metal catalysts (SACs) are used as sulfur cathode additives to promote battery performance, although the material selection and mechanism that govern the catalytic activity remain unclear. It is shown that d-p orbital hybridization between the single-atom metal and the sulfur species can be used as a descriptor for understanding the catalytic activity of SACs in Li-S batteries. Transition metals with a lower atomic number are found, like Ti, to have fewer filled anti-bonding states, which effectively bind lithium polysulfides (LiPSs) and catalyze their electrochemical reaction. A series of single-atom metal catalysts (Me = Mn, Cu, Cr, Ti) embedded in three-dimensional (3D) electrodes are prepared by a controllable nitrogen coordination approach. Among them, the single-atom Ti-embedded electrode has the lowest electrochemical barrier to LiPSs reduction/Li2S oxidation and the highest catalytic activity, matching well with the theoretical calculations. By virtue of the highly active catalytic center of single-atom Ti on the conductive transport network, high sulfur utilization is achieved with a low catalyst loading (1 wt.%) and a high area-sulfur loading (8 mg cm(-2)). With good mechanical stability for bending, these 3D electrodes are suitable for fabricating bendable/foldable Li-S batteries for wearable electronics.
机译:单原子金属催化剂(囊)用作硫阴极添加剂以促进电池性能,尽管治理催化活性的材料选择和机制仍然不清楚。结果表明,单原子金属和硫物质之间的D-P轨道杂交可用作理解Li-S电池中囊的催化活性的描述符。发现具有较低原子数的过渡金属,如Ti,填充填充的抗粘合状态较少,其有效地结合多硫化物(嘴唇)并催化其电化学反应。通过可控的氮气配位方法制备嵌入三维(3D)电极中的一系列单原子金属催化剂(ME = Mn,Cu,Cr,Ti)。其中,单个原子Ti嵌入电极具有最低的电化学屏障,以唇唇/ Li2S氧化和最高的催化活性,与理论计算良好。借助于在导电运输网络上高活性催化中心的单原子Ti,通过低催化剂负载(1重量%)和高面积硫载荷(8mg cm(-2),实现高硫利用率)。具有良好的机械稳定性来弯曲,这些3D电极适用于为可穿戴电子设备制造可弯曲/可折叠的LI-S电池。

著录项

  • 来源
    《Advanced Materials》 |2021年第44期|2105947.1-2105947.12|共12页
  • 作者单位

    Tsinghua Univ Shenzhen Geim Graphene Ctr Tsinghua Berkeley Shenzhen Inst Shenzhen 518055 Peoples R China|Tsinghua Univ Tsinghua Shenzhen Int Grad Sch Shenzhen 518055 Peoples R China;

    Curtin Univ Fuels & Energy Technol Inst Perth WA 6102 Australia|Curtin Univ WA Sch Mines Minerals Energy & Chem Engn Perth WA 6102 Australia;

    Weizmann Inst Sci Dept Condensed Matter Phys IL-7610001 Rehovot Israel;

    Tsinghua Univ Shenzhen Geim Graphene Ctr Tsinghua Berkeley Shenzhen Inst Shenzhen 518055 Peoples R China|Tsinghua Univ Tsinghua Shenzhen Int Grad Sch Shenzhen 518055 Peoples R China;

    Tsinghua Univ Shenzhen Geim Graphene Ctr Tsinghua Berkeley Shenzhen Inst Shenzhen 518055 Peoples R China|Tsinghua Univ Tsinghua Shenzhen Int Grad Sch Shenzhen 518055 Peoples R China;

    Tsinghua Univ Shenzhen Geim Graphene Ctr Tsinghua Berkeley Shenzhen Inst Shenzhen 518055 Peoples R China|Tsinghua Univ Tsinghua Shenzhen Int Grad Sch Shenzhen 518055 Peoples R China;

    Beihang Univ Sch Mat Sci & Engn Beijing 100191 Peoples R China;

    Tsinghua Univ Shenzhen Geim Graphene Ctr Tsinghua Berkeley Shenzhen Inst Shenzhen 518055 Peoples R China|Tsinghua Univ Tsinghua Shenzhen Int Grad Sch Shenzhen 518055 Peoples R China;

    Tsinghua Univ Shenzhen Geim Graphene Ctr Tsinghua Berkeley Shenzhen Inst Shenzhen 518055 Peoples R China|Tsinghua Univ Tsinghua Shenzhen Int Grad Sch Shenzhen 518055 Peoples R China|Chinese Acad Sci Shenzhen Inst Adv Technol Shenzhen 518055 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    d-p orbital hybridization; flexible devices; lithium-sulfur batteries; single-atom metal catalysts; three-dimensional electrodes;

    机译:D-P轨道杂交;柔性器件;锂硫电池;单原子金属催化剂;三维电极;

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