4.6 Article

Hydrothermal synthesis of highly nitrogen-doped few-layer graphene via solid-gas reaction

Journal

MATERIALS RESEARCH BULLETIN
Volume 61, Issue -, Pages 252-258

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.materresbull.2014.09.088

Keywords

Nanostructures; Chemical synthesis; Photoelectron spectroscopy; XAFS (EXAFS and XANES); Electronic structure

Funding

  1. BSRF
  2. National Natural Science Foundation of China [11105032]
  3. Guangxi Higher Education Reform Project [2013JGZ100]
  4. Experimental Teaching Reform Project of Guangxi University [20120401]

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Nitrogen-doped (N-doped) graphene sheets with high doping concentration were facilely synthesized through solid-gas reaction of graphene oxide (GO) with ammonia vapor in a self-designed hydrothermal system. The morphology, surface chemistry and electronic structure of N-doped graphene sheets were investigated by TEM, AFM, XRD, XPS, XANES and Raman characterizations. Upon hydrothermal treatment, up to 13.22 at% of nitrogen could be introduced into the crumpled few-layer graphene sheets. Both XPS and}CANES analysis reveal that the reaction between oxygen functional groups in GO and ammonia vapor produces amide and amine species in hydrothermally treated GO (HTGO). Subsequent thermal annealing of the resultant HTGO introduces a gradual transformation of nitrogen bonding configurations in graphene sheets from amine N to pyridinic and graphitic N with the increase of annealing temperature. This study provides a simple but cost-effective and eco-friendly method to prepare N-doped graphene materials in large-scale for potential applications. (C) 2014 Elsevier Ltd. All rights reserved.

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