4.6 Article

A density function theory study on the NO reduction on nitrogen doped graphene

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 16, Issue 38, Pages 20561-20569

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c4cp02873b

Keywords

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Funding

  1. National Natural Science Foundation of China [11174070, 11147006]
  2. China Postdoctoral Science Foundation [2012M521399]
  3. Postdoctoral Research sponsorship in Henan Province [2011038]
  4. Foundation for the Key Young Teachers of Henan Normal University
  5. Start-up Foundation for Doctors of Henan Normal University

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The mechanisms for the catalytic reduction of NO on the metal-free nitrogen doped graphene (NG) support are investigated using the density function theory (DFT) calculations both with and without the van der Waals (vdW) correction. The results indicate that the dimer mechanism is more facile than the direct decomposition mechanism. In the dimer mechanism, a three-step reaction is identified: (i) the coupling of two NO molecules into a (NO)(2) dimer, followed by (ii) the dissociation of the (NO)(2) dimer into N2O + O-ad, then (iii) the O adatom is taken away easily by the subsequent NO. Once the NO2 is desorbed, the remaining N2O can be reduced readily by NO on NG. The reaction processes are also confirmed from the first principles molecular dynamics simulations. The results suggest that the NG is an efficient metal-free catalyst for catalytic reduction of NO.

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