Title of article :
Rearrangement of α-pinene oxide to campholenic aldehyde over the trimesate metal–organic frameworks MIL-100, MIL-110 and MIL-96
Author/Authors :
Maria N. Timofeeva، نويسنده , , Valentina N. Panchenko، نويسنده , , Anna A. Abel، نويسنده , , Nazmul Abedin Khan، نويسنده , , Imteaz Ahmed، نويسنده , , Artem B. Ayupov، نويسنده , , Konstantin P. Volcho، نويسنده , , Sung Hwa Jhung، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
7
From page :
114
To page :
120
Abstract :
The catalytic performance of porous metal–benzenetricarboxylates, such as MIL-100(Al, Fe and Cr), MIL-110(Al) and MIL-96(Al), was investigated with a combination of physicochemical and catalytic approaches in the rearrangement of α-pinene oxide to campholenic aldehyde (CA). The investigation of Lewis acidity was done by EPR and IR spectroscopy using 2,2′,6,6′-tetramethyl-1-piperidinyoxyl radical and benzonitrile as the probe molecules, respectively. For Al–BTCs, both these methods showed a decrease in the amount of Lewis acid sites as follows: MIL-100 > MIL-110 > MIL-96. The reaction rate and selectivity toward CA also decreased in the same order. A relatively good correlation between selectivity toward CA and the electronegativity of the metal ion was found for isostructural MIL-100(Al, Fe and Cr). The selectivity toward CA decreased in the order: MIL-100(Al) > MIL-100(Fe) > MIL-100(Cr). The high selectivity toward CA in the presence of MIL-100 has been suggested to originate from the unique structure of this material, which favors shape selectivity.
Keywords :
ethylene , Lewis acidity , Silica-alumina , Hydroxy-groups , pyridine , CARBON MONOXIDE , alumina , Ethanol dehydration , Reaction Mechanism , Surface sites
Journal title :
Journal of Catalysis
Serial Year :
2014
Journal title :
Journal of Catalysis
Record number :
1224759
Link To Document :
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