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Laser-Induced Conversion of Teflon into Fluorinated Nanodiamonds or Fluorinated Graphene

  • Ruquan Ye
  • , Xiao Han
  • , Dmitry V. Kosynkin
  • , Yilun Li
  • , Chenhao Zhang
  • , Bo Jiang
  • , Angel A. Martí*
  • , James M. Tour
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Laser-assisted materials fabrication is an advanced technique that has propelled recent carbon synthesis approaches. Direct laser writing on polyimide or lignocellulose materials by a CO2 laser has successfully transformed the substrates into hierarchical graphene. However, formation of other carbon allotropes such as diamond and fullerene remains challenging. Here, we report the direct synthesis of fluorinated nanodiamonds or fluorinated graphene by treating polytetrafluoroethylene (Teflon, or PTFE) with a 9.3 μm pulsed CO2 laser under argon; no exogenous fluorine source is needed. The laser is part of a commercial laser cutting/scribing system that is found in most machine shops. Therefore, it is a readily accessible tool. This discovery could inspire future development for the laser-assisted synthesis of functionalized carbon allotropes.
Original languageEnglish
Pages (from-to)1083-1088
JournalACS Nano
Volume12
Issue number2
Online published12 Jan 2018
DOIs
Publication statusPublished - 27 Feb 2018
Externally publishedYes

Funding

Rice University gratefully acknowledges the support from the Air Force Office of Scientific Research (FA9550-14-1-0111) and Universal Laser Systems for generously providing the XLS10MWH laser system with Multiwave Hybrid technology that was used for this research. Mr. J. Hillman of Universal Laser Systems kindly provided regular helpful advice. X.H. thanks the China Scholarship Council for partial support.

Research Keywords

  • fluorinated graphene
  • fluorinated nanodiamonds
  • graphene
  • laser-induced graphene
  • nanodiamonds

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