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Experimental and DFT studies of N2O decomposition over bare and Co-doped magnesium oxide—insights into the role of active sites topology in dry and wet conditions

✍ Scribed by Paweł Stelmachowski; Filip Zasada; Witold Piskorz; Andrzej Kotarba; Jean-Francois Paul; Zbigniew Sojka


Publisher
Elsevier Science
Year
2008
Tongue
English
Weight
431 KB
Volume
137
Category
Article
ISSN
0920-5861

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✦ Synopsis


Isothermal and TPSR studies of deN 2 O reaction were performed over model MgO, and Co-MgO systems. Complementary experiments such as O 2 -TPD, H 2 O-TPD and IR, supported by DFT molecular modeling were carried out to elucidate the role of topological irregularities such as corners, steps, edges on the principal reaction events in dry and wet environment. The hydroxyl groups produced upon water adsorption were used for selective blocking of the active sites. Topological aspect of the surface reactivity was discussed in terms of the energetics of reaction steps and the relative stability and mobility of reaction intermediates (O 2 2À ) and inhibiting (OH À surf ) species. Whereas the most active corner sites are depleted by oxygen, produced in the course of N 2 O decomposition, the edge and step sites could be eliminated only by more strongly adsorbed water. In steady state conditions the reaction turns over mainly on terrace sites and is moisture insensitive. Upon introduction of Co 2+ ions to magnesium oxide the N 2 O conversion curve is shifted by 200 8C towards lower temperatures, due to the change in the N 2 O activation step (from anionic redox to cationic redox). However, at such thermal conditions the terrace sites remain still hydroxylated, and the overall reaction rate is clearly deteriorated by water present in the feed.