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The Growth of Copper Clusters over ZnO: the Competition between Planar and Polyhedral Clusters

机译:ZnO上铜簇的生长:平面簇和多面簇之间的竞争

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Hybrid quantum and molecular mechanical calculations have been used to investigate the nucleation and growth of copper clusters on the (OOOl)-Zn polar surface of ZnO. Our method is based on the embedded molecular cluster approach developed to study point defects in polarizable ionic solids, where we make use of the chemically accurate exchange and correlation density functional, B97-1, for the treatment of interactions between the metal cluster and oxide support. Following the initial seeds of cluster growth at the anchor sites on the zinc terminated surface, we identify distinct families of structures for Cu4—Cu7 in the main oxidation states and show when the clusters move from 2- to 3-dimensional entities. Our calculations corroborate and rationalize the experimental evidence of the predominantly neutral nature of larger clusters, with the positive charge concentrating at the anchor site, which is a copper atom occupying a surface vacant zinc site. We unravel the mechanisms for the planar clusters stabilization around the anchor, with the upper copper atoms effectively wetting the ZnO surface, and for the formation of polyhedral configurations prompted by interaction with electron-rich oxide surface ions. From comparison of both binding and nucleation energies, we predict a dynamical equilibrium between planar and polyhedral cluster morphologies for small copper clusters, which can alternate upon cluster growth and chemical interactions. We conclude that the ability of anchor sites to stabilize copper clusters of different morphologies is the key factor that prevents sintering of supported metal clusters and maximizes the surface area of the catalyst.
机译:混合量子和分子力学计算已用于研究ZnO(OOOl)-Zn极性表面上铜簇的形核和生长。我们的方法基于开发用于研究可极化离子固体中点缺陷的嵌入式分子簇方法,其中我们利用化学准确的交换和相关密度泛函B97-1来处理金属簇与氧化物载体之间的相互作用。在锌终止表面的锚点上出现簇生长的初始种子之后,我们确定了主要氧化态下Cu4-Cu7的不同结构族,并显示了簇何时从2维实体移动到3维实体。我们的计算结果证实并证实了较大簇主要具有中性的实验证据,正电荷集中在锚定位点,锚定位点是一个铜原子,占据了表面空着的锌位点。我们揭示了锚周围的平面团簇稳定的机制,上部的铜原子有效地润湿了ZnO表面,以及与富电子氧化物表面离子相互作用促使形成多面体构型的机制。通过比较结合能和成核能,我们预测了小的铜团簇的平面和多面体团簇形态之间的动态平衡,这在团簇生长和化学相互作用时可以交替发生。我们得出结论,锚点稳定不同形态铜簇的能力是防止烧结负载金属簇并使催化剂表面积最大化的关键因素。

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