Title of article :
Microkinetic analysis of the epoxidation of styrene catalyzed by (porphyrin)Mn encapsulated in molecular squares
Author/Authors :
Gloria A.E. Oxford، نويسنده , , Mar?´a C. Curet-Arana، نويسنده , , Debarshi Majumder، نويسنده , , Richard W. Gurney، نويسنده , , Melissa L. Merlau، نويسنده , , SonBinh T. Nguyen، نويسنده , , Randall Q. Snurr، نويسنده , , Linda J. Broadbelt، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
11
From page :
145
To page :
155
Abstract :
Experiments and microkinetic modeling were used to investigate the kinetics of styrene epoxidation catalyzed by (porphyrin)Mn using iodosylbenzene. While the kinetics follow the general form of Michaelis–Menten rate expressions as proposed in the literature, these simplified rate forms cannot capture all the details of the kinetics simultaneously, most notably catalyst deactivation. In contrast, a microkinetic model based on elementary steps, including deactivation via μ-oxo dimer formation and irreversible degradation, is able to capture experimental data over all reaction times and for different (porphyrin)Mn. Experimentally, we show that encapsulation of (porphyrin)Mn in a supramolecular cavity known as a molecular square significantly reduces catalyst deactivation, which is in agreement with previous experimental studies. Microkinetic modeling also captured the kinetics of this system. Net rate analysis revealed that production of epoxide was primarily due to encapsulated catalysts, and the model was able to quantify the difference in the concentration of deactivated catalyst with and without encapsulation.
Keywords :
Co/ITQ-2 , Particle size effects , At work CO-FTIR , Metal surface reconstruction , Fischer–Tropsch , Model catalysts
Journal title :
Journal of Catalysis
Serial Year :
2009
Journal title :
Journal of Catalysis
Record number :
1225750
Link To Document :
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