Structure and catalytic properties of magnesia-supported copper salts of molybdovanadophosphoric acid
Data(s) |
2006
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Resumo |
The structure and stability of magnesia-supported copper salts of molybdovanadophosphoric acid (Cu2PMo11VO40) were characterized by different techniques. The catalyst was prepared in ethanol by impregnation because this solvent does not hurt texture of the water-sensitive MgO and Cu2PMo11VO40. The Keggin-type structure compound may be degraded partially to form oligomerized polyoxometalate when supported on MgO. However, the oligomers can rebuild as the Keggin structure again after thermal treatment in air or during the reaction. Meanwhile, the V atoms migrate out of the Keggin structure to form a lacunary structure, as observed by Fourier transform IR spectroscopy. Moreover, the presence of Cu2+ as a countercation showed an affirmative influence on the migration of V atoms, and the active sites derived from the lacunary species generated after release of V from the Keggin anion. The electron paramagnetic resonance data imply that V5+ autoreduces to V4+ in the fresh catalyst, and during the catalytic reaction a large number of V4+ ions are produced, which enhance the formation of O2- vacancies around the metal atoms. These oxygen vacancies may also improve the reoxidation function of the catalyst. This behavior is correlated to higher catalytic properties of this catalyst. The oxidative dehydrogenation of hexanol to hexanal was studied over this catalyst. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Zhou GD;Yang XM;Liu J;Zhen KJ;Wang HS;Cheng TX.Structure and catalytic properties of magnesia-supported copper salts of molybdovanadophosphoric acid,JOURNAL OF PHYSICAL CHEMISTRY B,2006,110(20):9831-9837 |
Palavras-Chave | #PHASE OXIDATIVE DEHYDROGENATION #ISOBUTYRIC ACID #HETEROPOLY COMPOUNDS #12-MOLYBDOPHOSPHORIC ACID #SELECTIVE OXIDATION #METAL-SALTS #12-HETEROPOLYMOLYBDATES #POLYANILINE #SILICA #STABILITY |
Tipo |
期刊论文 |