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MgO encapsulated mesoporous zeolite for the side chain alkylation of toluene with methanol.

Journal of nanoscience and nanotechnology (2010-04-01)
Nanzhe Jiang, Hailian Jin, Eun-Young Jeong, Sang-Eon Park
RESUMEN

Side chain alkylation of toluene with methanol was studied over mesoporous zeolite supported MgO catalysts. MgO were supported onto the carbon templated mesoporous silicalite-1 by direct synthesis route under microwave conditions. This direct synthesis route yields the majority of MgO highly dispersed into the mesopores of the silicalite-1 crystals. The vapor phase alkylation of toluene with methanol was performed over these catalysts under vapor phase conditions at atmospheric pressure. Mesoporous silicalite-1 supported MgO catalysts gave improved yields towards side chain alkylated products compared to the bulk MgO. The higher activity exhibited by 5% MgO supported on mesoporous silicalite compared to the one with 1% MgO can be attributed to the large number of weak basic sites observed from the CO2 TPD.

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Sigma-Aldrich
Isobutylbenzene, 99%