The interaction of propene and butenes with a butene oxydehydrogenation catalyst, MgFe2O4, and with an isomerization catalyst, gamma-Al2O3, have been studied by FTIR spectroscopy. Allyloxy species (prop-2-en-1-oxides from propene and but-3-en-2-oxide from but-1-ene) were observed over MgFe2O4, while allyl species (prop-2-en-1-yl from propene, but-3-en-2-yl from but-1-ene and 2-methylprop-2-en-1-yl from isobutene), thought to be sigma-bonded to Al3+ ions, were observed over gamma-Al2O3. It is proposed that in all cases the allylic C-H bond is heterolytically broken at cation-anion couples (M(n+)O(2-)) to give rise to anionic allyls. However, when the cation is reducible, as on the Fe3+ centres of magnesium ferrite, the allyl anion is further rapidly oxidized to allyloxy species that, at high temperature, can act as cationic allyls which interact weakly with oxide anions. From propene, the cationic allyls can act as symmetric species, as is expected for acrolein synthesis.

IR study of alkene allylic activation on magnesium ferrite and alumina catalysts RID A-1095-2008

Trombetta M;
1996-01-01

Abstract

The interaction of propene and butenes with a butene oxydehydrogenation catalyst, MgFe2O4, and with an isomerization catalyst, gamma-Al2O3, have been studied by FTIR spectroscopy. Allyloxy species (prop-2-en-1-oxides from propene and but-3-en-2-oxide from but-1-ene) were observed over MgFe2O4, while allyl species (prop-2-en-1-yl from propene, but-3-en-2-yl from but-1-ene and 2-methylprop-2-en-1-yl from isobutene), thought to be sigma-bonded to Al3+ ions, were observed over gamma-Al2O3. It is proposed that in all cases the allylic C-H bond is heterolytically broken at cation-anion couples (M(n+)O(2-)) to give rise to anionic allyls. However, when the cation is reducible, as on the Fe3+ centres of magnesium ferrite, the allyl anion is further rapidly oxidized to allyloxy species that, at high temperature, can act as cationic allyls which interact weakly with oxide anions. From propene, the cationic allyls can act as symmetric species, as is expected for acrolein synthesis.
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12610/6306
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 96
  • ???jsp.display-item.citation.isi??? 89
social impact