carbon center
  • English
  • 首页
  • 团队成员
    教师
    博士后
    科研助理
    博士生
    硕士生
    已毕业
  • 研究方向
    金属富勒烯化学
    有机无机杂化材料
    能量储存转换材料与器件
  • 研究成果
    论文
    专著
    专利
  • 实验资源
    国际会议
    表征设备
    制备设备
    分离设备
    其他设备
  • 人才招聘
研究进展

研究进展

研究进展

2022-10-21:何志敏在Chemistry-An Asian Journal发表论文

Fullerene-Derived Porous and Defective N-Doped Carbon Nanosheets as Advanced Trifunctional Metal-Free Electrocatalysts

Zhimin He+, Ziwei Zhou+, Peng Wei, Ting Xu, Jiantao Han, Keke Huang, Kun Guo*, Wenhuan Huang*, Takeshi Akasaka, and Xing Lu*

Chemistry-An Asian Journal, 2022, e202200994

https://doi.org/10.1002/asia.202200994

Abstract

Dopants and defects are crucial for multifunctional carbon-based metal-free electrocatalysts, but the rational design and facile production remain as a big challenge. Herein, we report a novel strategy using salt-assisted pyrolysis of derivatized fullerenes to fabricate defect-rich and N-doped carbon nanosheets. Molecular level modification of C60 via amination and hydroxylation gives rise to well-defined fullerol molecules bearing N-containing groups (FNG). Subsequent calcination of FNG and NaCl at 750 °C generates porous carbon nanosheets (FNCNs-750) and turns the N-containing groups into high-level N dopants (12.43 at.%). Further pyrolysis of FNCNs-750 at 900 °C (FNCNs-900) leads to a reduced N content populated by graphitic-N. Meanwhile, abundant intrinsic defects (e. g., topological defects and edges) are created due to the breakdown of fullerene cages and partial removal of edged N atoms. These structural features endow FNCNs-900 with outstanding trifunctional catalytic performance, better than or close to the noble metal-based benchmark catalysts.

https://onlinelibrary.wiley.com/cms/asset/56bd328a-a24a-40ab-b8ae-1c31b27ee53c/asia202200994-toc-0001-m.jpg

 

分享到:
点击次数:   更新时间:2022-10-21  【打印此页】  【关闭】
上一篇:2022-10-24:余鹏威在Nanoscale发表论文    下一篇:2022-09-26:郭昆在Nano Lett.发表论文