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首页> 外文期刊>Journal of Physics. Condensed Matter >Nucleation and growth on defect sites: experiment-theory comparison for Pd/MgO(001)
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Nucleation and growth on defect sites: experiment-theory comparison for Pd/MgO(001)

机译:缺陷部位的成核和生长:Pd / MgO(001)的实验理论比较

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摘要

It is well established that nucleation of metal clusters on oxide and halide surfaces is typically dominated by defect sites. Rate equation models of defect nucleation have been developed and applied to these systems. By comparing the models with nucleation density experiments, energies for defect trapping, adsorption, surface diffusion and pair binding have been deduced in favourable cases, notably for Pd deposited on Ar-cleaved MgO(001). However, the defects responsible remain largely unknown. More recently, several types of ab initio calculation have been presented of these energies for Pd and related metals on MgO(001) containing several types of surface defect; these calculated values are surveyed, and some are widely divergent. New rate equation nucleation density predictions are presented using the calculated values. Some calculations, for some defect types, are much closer to experiment than others; the singly charged F-s(+) centre and the neutral divacancy emerge as candidate defects. In these two cases, the Pd/MgO(001) nucleation density predictions agree well with experiment, and the corresponding surface defects deserve to be taken seriously. Energy and entropy values are discussed in the light of differences in calculated char-e redistribution between the metal atoms, clusters and (charged) surface defects, and (assumed or calculated) cluster geometries.
机译:公认的是,氧化物和卤化物表面上的金属簇的成核通常由缺陷位点决定。缺陷成核的速率方程模型已经开发并应用于这些系统。通过将模型与成核密度实验进行比较,在有利的情况下,推断出了缺陷捕获,吸附,表面扩散和结对结合的能量,特别是沉积在Ar裂解的MgO(001)上的Pd。但是,造成缺陷的原因在很大程度上仍然未知。最近,已针对包含多种表面缺陷的MgO(001)上的Pd和相关金属提供了从头算的几种类型的计算。对这些计算值进行了调查,其中一些差异很大。使用计算出的值,提出了新的速率方程成核密度预测。对于某些缺陷类型,某些计算比其他计算更接近于实验。单电荷的F-s(+)中心和中性空位作为候选缺陷出现。在这两种情况下,Pd / MgO(001)形核密度的预测与实验吻合得很好,并且相应的表面缺陷值得认真对待。根据金属原子,团簇和(带电)表面缺陷与(假定或计算的)团簇几何形状之间计算出的特征重新分布的差异,讨论了能量和熵值。

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