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Influence of the nature of the exchanged ion on n-hexane aromatizationactivity of Pt–M–ETS-10: Ab Initio calculations on the location of Pt

S. B. , Waghmode and T. K. , Das and R , Vetrivel and S. , Sivasanker (1999) Influence of the nature of the exchanged ion on n-hexane aromatizationactivity of Pt–M–ETS-10: Ab Initio calculations on the location of Pt. Journal of Catalysis , 185 . pp. 265-271.

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Abstract

The activity of Pt–M–ETS-10 samples exchanged with different alkali metals (MDLi, Na, K, Rb, or Cs) in the aromatization of n-hexane depends on the nature of the exchanged metal ion (M). A distinct relationship between the intermediate electronegativity (Sint) of the different metal-exchanged ETS-10 samples and benzene yield is reported, suggesting the activation of Pt by the basicity of the exchanged metal. Results of ab initio Hartree–Fock calculations on cluster models representing Pt–M–ETS-10 corresponding to the presence of Pt nearer to [TiO6]2¡ and [SiO4] groups reveal that the presence of Pt nearer to [TiO6]2¡ is energetically more favored and results in a gain of electron charge by Pt. The studies also suggest an increasing amount of electron transfer from the model clusters of ETS-10 to the Pt with increase in the electropositive character of the exchanged metal. It appears therefore, that small Pt clusters residing nearer to [TiO6]2¡ accessible from the 12-MR channels are the likely active sites in n-hexane aromatization over Pt–M–ETS-10.

Item Type:Article
Subjects:Science > Chemistry
ID Code:160
Deposited By:INVALID USER
Deposited On:28 Feb 2007 13:31
Last Modified:20 Mar 2007 21:52

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