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Theoretical study of the CO catalytic oxidation on Au/SAPO-11 zeolite

机译:Au / SAPO-11分子筛上CO催化氧化的理论研究

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Quantum chemistry calculations were carried out, using ONIOM2 methodology, to investigate the CO adsorption and oxidation on gold supported on Silicoaluminophospates (SAPO) molecular sieves Au/SAPO-11 catalysts. Two models were studied, one containing one Au atom per site (AuASAPO-11), and the other with two Au atoms per site (Au_2ASAPO-11). The results reveal that the CO adsorption and oxidation are exothermic on Au/SAPO11 with an ΔE of -41.0 kcal/mol and DE = -52.0 kcal/mol, for the adsorption and oxidation, respectively. On the Au_2-SAPO-11 model, the CO adsorption and oxidation reaction occur, with a ΔE of -29.7 kcal/mol and -52 kcal/mol, respectively. According to our results, the oxidation reaction exhibits an Eley-Rideal type mechanism with adsorbed CO. The theoretical calculations reveal that this type of material could be interesting to disperse Au and consequently to strengthen its catalytic use for different reactions.
机译:使用ONIOM2方法进行了量子化学计算,以研究在硅铝磷酸盐(SAPO)分子筛Au / SAPO-11催化剂上负载的金上CO的吸附和氧化。研究了两个模型,一个模型每个位点包含一个Au原子(AuASAPO-11),另一个模型每个位点包含两个Au原子(Au_2ASAPO-11)。结果表明,CO的吸附和氧化在Au / SAPO11上是放热的,ΔE分别为-41.0 kcal / mol和DE = -52.0 kcal / mol。在Au_2-SAPO-11模型上,发生了CO吸附和氧化反应,ΔE分别为-29.7 kcal / mol和-52 kcal / mol。根据我们的结果,氧化反应表现出具有吸附CO的Eley-Rideal型机理。理论计算表明,这种类型的材料对于分散Au可能是有趣的,因此可以增强其在不同反应中的催化作用。

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