Skip to main navigation Skip to search Skip to main content

Elucidating the Mechanism of Iron‐Catalyzed Graphitization: The First Observation of Homogeneous Solid‐State Catalysis

  • Robert D. Hunter
  • , Masaki Takeguchi
  • , Ayako Hashimoto
  • , Kannan M. Ridings
  • , Shaun C. Hendy
  • , Dmitri Zakharov
  • , Nils Warnken
  • , Jack Isaacs
  • , Sol Fernandez‐Muñoz
  • , Joaquín Ramirez‐Rico*
  • , Zoe Schnepp*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

154 Downloads (Pure)

Abstract

Carbon is a critical material for existing and emerging energy applications and there is considerable global effort in generating sustainable carbons. A particularly promising area is iron‐catalyzed graphitization, which is the conversion of organic matter to graphitic carbon nanostructures by an iron catalyst. In this paper, it is reported that iron‐catalyzed graphitization occurs via a new type of mechanism that is called homogeneous solid‐state catalysis. Dark field in situ transmission electron microscopy is used to demonstrate that crystalline iron nanoparticles “burrow” through amorphous carbon to generate multiwalled graphitic nanotubes. The process is remarkably fast, particularly given the solid phase of the catalyst, and in situ synchrotron X‐ray diffraction is used to demonstrate that graphitization is complete within a few minutes.
Original languageEnglish
Article number2404170
Number of pages10
JournalAdvanced Materials
Early online date16 Jul 2024
DOIs
Publication statusE-pub ahead of print - 16 Jul 2024

Keywords

  • nanotube
  • graphitization
  • homogeneous solid‐state catalysis

Fingerprint

Dive into the research topics of 'Elucidating the Mechanism of Iron‐Catalyzed Graphitization: The First Observation of Homogeneous Solid‐State Catalysis'. Together they form a unique fingerprint.

Cite this