Hierarchical porous single-wall carbon nanohorns with atomic-level designed single-atom Co sites toward oxygen reduction reaction

  • Jung, Jae Young
  • Kim, Sungjun
  • Kim, Jeong-Gil
  • Kim, Min Ji
  • Lee, Kug-Seung
  • ... Lim, Hyung-Kyu
  • 외 4명
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초록

Hierarchical pore structure is crucial for effective mass transfer and utilization of a number of active sites in single-metal atom catalysts. Here, we present a strategy for developing a hierarchical porous structure in single -wall carbon nanohorns with Co-N-x sites (Co/CNH) and maximizing their oxygen reduction activity. Thermal annealing is effective for generating hierarchical pore by removing amorphous carbons and opening internal and interstitial pore channels. Ammonia annealing modifies coordination structure and relieves local strain around cobalt atoms to form more ideal Co-N-4-C moieties. DFT calculations reveal that the enhanced intrinsic catalytic activity (i(k) = 60.16 mA cm(-2) for Co/CNH Air NH3 vs. 8.24 mA cm(-2) for Pt/C) is attributed to the ligand-push effect of water molecules on the other side of Co-N4 sites. In a single-cell experiment, a power density of 742 mW cm(-2) was achieved, which is the remarkably high value among M-N-C catalysts using commercialized membrane electrode assemblies (MEAs).

키워드

Single atom catalystsSingle-wall carbon nanohornsHierarchical pore structureOxygen reduction reactionAnion exchange membrane fuel cellsNITROGEN-DOPED GRAPHENECATALYTIC SITESACTIVE-SITESFEIDENTIFICATIONCOBALTADSORPTIONCATHODE
제목
Hierarchical porous single-wall carbon nanohorns with atomic-level designed single-atom Co sites toward oxygen reduction reaction
저자
Jung, Jae YoungKim, SungjunKim, Jeong-GilKim, Min JiLee, Kug-SeungSung, Yung-EunKim, PilYoo, Sung JongLim, Hyung-KyuKim, Nam Dong
DOI
10.1016/j.nanoen.2022.107206
발행일
2022-06-15
유형
Article
저널명
Nano Energy
97