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Conceptual chemistry approach towards the support effect in supported vanadium oxides: Valence bond calculations on the ionicity of vanadium catalysts

机译:概念化学方法对负载型钒氧化物的支持作用:价键计算钒催化剂的离子性

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摘要

The concept of bond ionicity, obtained via a valence bond analysis, is invoked in the interpretation of the catalytic activity of supported vanadium oxides, in analogy with previous work conducted within the framework of conceptual DFT. For a set of model clusters representing the vanadium oxide supported on SiO2, Al2O3, TiO2, ZrO2, the ionic character of the vanadium-oxygen bond, involved in the dissociative adsorption of methanol on the catalyst, was quantified. Detailed scrutiny shows that this ionicity increases from the Al through the Zr support, in agreement with the increasing catalytic activity through this series; the case of the Si supported oxide is found to be an exception however, giving rise to the most ionic V-O bond of the different compounds studied. This finding is confirmed by calculations on smaller clusters focusing on detail in the π back bonding.
机译:通过价键分析获得的键离子性概念在解释负载型钒氧化物的催化活性时被引用,这与在概念DFT框架内进行的先前工作类似。对于代表负载在SiO2,Al2O3,TiO2,ZrO2上的钒氧化物的一组模型簇,对与甲醇在催化剂上的解离吸附有关的钒-氧键的离子特征进行了定量。详细的研究表明,这种离子性从Al到Zr载体都在增加,这与该系列中催化活性的增加是一致的。然而,发现硅负载的氧化物的情况是例外,这导致了所研究的不同化合物中离子性最强的V-O键。这一发现通过对较小的簇的计算得到了证实,这些簇集中在π背键的细节上。

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