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首页> 外文期刊>The Journal of Chemical Physics >Inducing wetting morphologies and increased reactivities of small Au clusters on doped oxide supports
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Inducing wetting morphologies and increased reactivities of small Au clusters on doped oxide supports

机译:诱导润湿形态和掺杂氧化物支撑件上的小AU簇的再现反应

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摘要

Au nanoparticles are promising catalysts for industrially important reactions. Their catalytic activity is known to depend on their charge state and morphology. Using density functional theory calculations, we have studied how the induced charge and dimensionality of small Au clusters can be tuned by doping the oxide support that they are deposited on. We have investigated Au-n clusters of sizes n = 1, 2, 3, and 20 on Al-doped MgO and Mo-doped CaO. We show that substitutionally doping the oxide support with an electron donor changes the cluster morphology from an upright and/or three-dimensional geometry to a flat geometry. This structural wetting transition results in an increase in the negative charge induced on the cluster and a consequent lowering in the dissociation barrier for the O-2 atoms adsorbed on the cluster. We find that the nature of Mo and Al dopants differs: only for the former is it true that the charge state of the dopant atoms depends on the presence or absence of Au nanoparticles and their size. Published by AIP Publishing.
机译:Au纳米粒子是在工业上重要反应的承诺催化剂。已知其催化活性取决于其电荷状态和形态。使用密度泛函理论计算,我们研究了如何通过掺杂它们沉积的氧化物支撑来调节小Au簇的诱导电荷和维度。我们研究了在Al-掺杂的MgO和Mo-掺杂CaO上的尺寸N = 1,2,3和20的Au-n簇。我们表明,用电子给体替换氧化物载体从直立和/或三维几何形状变为平坦几何形状的簇形态。该结构润湿转变导致簇上诱导的负电荷的增加,并且在簇上吸附在簇上的O-2原子的解离屏障中的随之降低。我们发现Mo和Al掺杂剂的性质不同:仅用于前者,掺杂剂原子的电荷状态取决于Au纳米颗粒的存在或不存在,才是真实的。通过AIP发布发布。

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