Facilitating polysulfide confinement using N-doped honeycomb-like carbon with high pyridinic-nitrogen content for high-performance Li-S batteries

Lai Chen, Chenying Zhao, Shuangyi Zhao, Zhiyu Liu, Yun Lu*, Youxiang Bai, Ning Li, Duanyun Cao, Shi Chen, Yuefeng Su*, Feng Wu

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

7 Citations (Scopus)

Abstract

Increasing the amount of the nitrogen dopant, especially pyridinic-N species, in carbonaceous materials has been shown to significantly enhance the performance of lithium-sulfur (Li-S) batteries. Despite the positive impact of N doping on carbonaceous materials, the practical realisation of a high N dopant content of >5 at.% remains a significant challenge. Furthermore, to regulate the specific N species in carbonaceous materials is another hurdle. Herein, we obtained a three-dimensional honeycomb-like N-doped mesoporous carbon (PNMC) material with a high N dopant content of 8.82 at.% (pyridinic-N content, 3.49 at.%) by calcining calcium pantothenate under an Ar atmosphere after a phosphorisation process. It is believed that the P dopant contributes to the enhancement of not only the N content but also the polysulfide adsorption capability of the N dopant. As expected, the sulfur cathode comprising PNMC prepared at 800°C (S/PNMC-800) exhibited superior electrochemical performance as confirmed by the discharge specific capacity of 556.7 mA h g−1 observed after 300 cycles at 1 C. This study proposes a facile regulation technique to dope pyridinic-N species in carbonaceous materials, which may trigger the future inventive development of functional S hosts for use in Li-S batteries. [Figure not available: see fulltext.]

Translated title of the contribution高吡啶氮含量的氮掺杂蜂窝状碳促进对多硫化物的 限制以实现高性能锂硫电池
Original languageEnglish
Pages (from-to)2169-2180
Number of pages12
JournalScience China Materials
Volume66
Issue number6
DOIs
Publication statusPublished - Jun 2023

Keywords

  • N-doped carbon
  • high nitrogen content
  • lithium-sulfur batteries
  • phosphorisation
  • pyridinic N

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