4.6 Article

The formation of nitrogen-containing functional groups on carbon nanotube surfaces: a quantitative XPS and TPD study

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 12, Issue 17, Pages 4351-4359

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/b923651a

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Funding

  1. Research Department Interfacial Systems Chemistry (IFSC) at the Ruhr-University Bochum
  2. BMBF [05KS7PC2]

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Nitrogen-containing functional groups were generated on the surface of partially oxidized multi-walled carbon nanotubes (CNTs) via post-treatment in ammonia. The treatment temperature was varied in order to tune the amount and type of nitrogen- and oxygen-containing functional groups, which were studied using high-resolution X-ray photoelectron spectroscopy (XPS) and temperature-programmed desorption (TPD). The surface defects on CNTs due to the incorporation of nitrogen were investigated by Raman spectroscopy. Deconvoluted XP N1s spectra were used for the quanti. cation of different nitrogen-containing functional groups, and TPD studies were performed in inert and ammonia atmosphere to investigate the surface reactions occurring on the oxidized CNT surfaces quantitatively. Nitrile, lactam, imide and amine-type functional groups were formed in the presence of ammonia below 300 degrees C. When the OCNTs were treated in the medium temperature range between 300 degrees C to 500 degrees C, mainly pyridine-type nitrogen groups were generated, whereas pyridinic, pyrrolic and quaternary-type nitrogen groups were the dominating species present on the CNT surface when treated above 500 degrees C. It was found that about 38% of the oxygen functional groups react with ammonia below 500 degrees C.

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