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A Theoretical Investigation on CO Oxidation by Single‐Atom Catalysts M1/γ‐Al2O3 (M=Pd Fe Co and Ni)

机译:M1 /γ-Al2O3(M = PdFeCo和Ni)单原子催化剂氧化CO的理论研究

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摘要

Single‐atom catalysts have attracted much interest recently because of their excellent stability, high catalytic activity, and remarkable atom efficiency. Inspired by the recent experimental discovery of a highly efficient single‐atom catalyst Pd1/γ‐Al2O3, we conducted a comprehensive DFT study on geometries, stabilities and CO oxidation catalytic activities of M1/γ‐Al2O3 (M=Pd, Fe, Co, and Ni) by using slab‐model. One of the most important results here is that Ni1/Al2O3 catalyst exhibits higher activity in CO oxidation than Pd1/Al2O3. The CO oxidation occurs through the Mars van Krevelen mechanism, the rate‐determining step of which is the generation of CO2 from CO through abstraction of surface oxygen. The projected density of states (PDOS) of 2p orbitals of the surface O, the structure of CO‐adsorbed surface, charge polarization of CO and charge transfer from CO to surface are important factors for these catalysts. Although the binding energies of Fe and Co with Al2O3 are very large, those of Pd and Ni are small, indicating that the neighboring O atom is not strongly bound to Pd and Ni, which leads to an enhancement of the reactivity of the O atom toward CO. The metal oxidation state is suggested to be one of the crucial factors for the observed catalytic activity.
机译:单原子催化剂由于其出色的稳定性,高催化活性和出色的原子效率而引起了人们的极大兴趣。受最近高效单原子催化剂Pd1 /γ-Al2O3的实验发现的启发,我们对M1 /γ-Al2O3的几何形状,稳定性和CO氧化催化活性进行了全面的DFT研究(M = Pd,Fe,Co,和Ni)通过使用平板模型。此处最重要的结果之一是Ni1 / Al2O3催化剂在CO氧化中的活性高于Pd1 / Al2O3。 CO的氧化是通过Mars van Krevelen机理发生的,其速率确定步骤是通过提取表面氧从CO生成CO2。表面O的2p轨道的预计状态密度(PDOS),CO吸附表面的结构,CO的电荷极化以及从CO到表面的电荷转移是这些催化剂的重要因素。尽管Fe和Co与Al2O3的结合能很大,但Pd和Ni的结合能很小,这表明相邻的O原子与Pd和Ni的结合力不强,这导致O原子对Al的反应性增强。建议金属氧化态是观察到的催化活性的关键因素之一。

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