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Polyoxomolybdate-Hydrocarbon Interactions. Synthesis and Structure of the CH2Mo4O15H3- Anion and Related Methylenedioxymolybdates
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Polyoxomolybdate-Hydrocarbon Interactions. Synthesis and Structure of the CH2Mo4O15H3- Anion and Related Methylenedioxymolybdates

V.W. Day, M.F. Fredrich, W.G. KlempererR.-S. Liu
Journal of the American Chemical Society, 卷.101(2), 頁碼.491-492
02/1979

摘要

Catalysis Chemistry (all) Biochemistry Colloid and Surface Chemistry
In light of the pronounced heterogeneous reactivity of molybdenum, tungsten, and vanadium oxides toward hydrocarbons, 1 it is somewhat surprising that no polyoxoanion clusters of these metals are known which contain hydrocarbon moieties bound to their surface oxygens. A recent study of the cobalt molybdate catalyzed selective oxidation of propylene to acrolein has provided evidence indicating that the rate-determining step is desorption of acrolein from the oxide catalyst surface. As a logical starting point for the structural investigation of polyoxoanion-hydrocarbon interactions, we have therefore examined the solution reactivity of acrolein and other aldehydes toward polyoxomolybdates. We report here the isolation and characterization of several presumably isostructural RCHMo 4 O 15 H 3- anions (R = C 2 H 3 , H, CH 3 , C 6 H 5 , and CF 3 ), which contain RCH units bonded to the oxide surface of a tetranuclear polyoxomolybdate cluster. © 1979, American Chemical Society. All rights reserved.

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