Heterodoped nanotubes: Theory, synthesis, and characterization of phosphorus-nitrogen doped multiwalled carbon nanotubes

Cruz-Silva, Eduardo;Cullen, David A.;Gu, Lin;Romo-Herrera, Jose Manuel;Terrones, Mauricio;et.al.
(2008) ACS Nano — Vol. 2, n° 3, p. 441-448 (2008)

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Authors
  • Cruz-Silva, Eduardo
    Author
  • Cullen, David A.
    Author
  • Gu, Lin
    Author
  • Romo-Herrera, Jose Manuel
    Author
  • Terrones, Mauricio
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Abstract
Arrays of multiwalled carbon nanotubes doped with phosphorus (P) and nitrogen (N) are synthesized using a solution of ferrocene, triphenyl-phosphine, and benzylamine in conjunction with spray pyrolysis. We demonstrate that iron phosphide (Fe3P) nanoparticles act as catalysts during nanotube growth, leading to the formation of novel PN-doped multiwalled carbon nanotubes. The samples were examined by high resolution electron microscopy and microanalysis techniques, and their chemical stability was explored by means of thermogravimetric analysis in the presence of oxygen. The PN-doped structures reveal important morphology and chemical changes when compared to N-doped nanotubes. These types of heterodoped nanotubes are predicted to offer many new opportunities, in the fabrication of fast-response chemical sensors.
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Citations

Cruz-Silva, E., Cullen, D. A., Gu, L., Romo-Herrera, J. M., Munoz-Sandoval, E., Lopez-Urias, F., Sumpter, B. G., Meunier, V., Charlier, J.-C., Smith, D. J., Terrones, H., & Terrones, M. (2008). Heterodoped nanotubes: Theory, synthesis, and characterization of phosphorus-nitrogen doped multiwalled carbon nanotubes. ACS Nano, 2(3), 441-448. https://doi.org/10.1021/nn700330w (Original work published 2008)