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首页> 外文期刊>Nanoscale >Synergistically boosting the anchoring effect and catalytic activity of MXenes as bifunctional electrocatalysts for sodium-sulfur batteries by single-atom catalyst engineering
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Synergistically boosting the anchoring effect and catalytic activity of MXenes as bifunctional electrocatalysts for sodium-sulfur batteries by single-atom catalyst engineering

机译:通过单原子催化剂工程协同提高MXenes作为钠硫电池双功能电催化剂的锚定效果和催化活性

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摘要

MXene based sulfur hosts have attracted enormous attention in room temperature sodium-sulfur (RT Na-S) batteries due to their strong affinity towards soluble sodium polysulfides (NaPSs). However, their electrocatalytic performance needs further improvement. Here, a series of single non-noble transition metal (TM = Fe, Co, Ni, and Cu) atoms anchored on Ti2CS2 (TM@Ti2CS2) were proposed as bifunctional sulfur hosts for Na-S batteries. The results testify that the introduction of TMs dramatically enhanced the chemical interaction between sulfur-containing species and Ti2CS2, which is attributed to the co-formation of TM-S and Na-S covalent bonds. Importantly, compared with pristine Ti2CS2, the sulfur reduction reaction (SRR) is thermodynamically more favorable on TM@Ti2CS2. In addition, the incorporation of Fe, Co, and Ni atoms is also conducive to promoting the dissociation of Na2S. The density of states (DOS) results suggest that TM@Ti2CS2 maintains metallic conductivity during the whole charge and discharge process. Overall, constructing single atom catalysts is an effective strategy to further improve the electrochemical performance of MXene based sulfur hosts for Na-S batteries.
机译:基于MXene硫主机吸引了巨大的注意在室温下电池(RTNa-S)电池由于其强大的亲和力对可溶性聚硫钠(午睡)。然而,他们electrocatalytic性能需求进一步改进。非贵金属过渡金属(TM =铁、Co、Ni、和铜原子)固定在Ti2CS2 (TM@Ti2CS2)提出作为Na-S双官能硫主机电池。引入TMs大大增强含硫的化学相互作用物种和Ti2CS2,归因于co-formation TM-S Na-S共价键。重要的是,与原始Ti2CS2相比,硫还原反应(SRR)从热力学角度来看TM@Ti2CS2更有利。的合并铁、Co、Ni原子也有利于促进钠分子的离解。结果表明,TM@Ti2CS2维护金属在整个电荷和电导率放电过程。原子催化剂是一种有效的策略进一步提高电化学性能基于MXene的硫主机Na-S电池。

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  • 来源
    《Nanoscale 》 |2023年第6期| 2747-2755| 共9页
  • 作者

    Na Li; Yulu Zhan; Haishun Wu;

  • 作者单位

    Key Laboratory of Magnetic Molecules and Magnetic Information Materials of Ministry of Education, School of Chemistry and Materials Science, Shanxi Normal University, Taiyuan 030000, People’s Republic of China.;

    Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 分子物理学、原子物理学 ;
  • 关键词

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