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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Coordination dependence of hyperfine interactions at impurities on fcc metal surfaces. Ⅰ. Electric-field gradient
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Coordination dependence of hyperfine interactions at impurities on fcc metal surfaces. Ⅰ. Electric-field gradient

机译:催化裂化金属表面杂质上超精细相互作用的配位依赖性。 Ⅰ。电场梯度

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We present a comparison between accurate ab initio calculations and a high-quality experimental data set (1986-2002) of electric-field gradients of Cd at different sites on Ni, Cu, Pd, and Ag surfaces. Experiments found a systematic rule to assign surface sites on (100) and (111) surfaces based on the main component of the electric-field gradient, a rule that does not work for (110) surfaces. Our calculations show that this particular rule is a manifestation of a more general underlying systematic behavior. When looked upon from this point of view, (100), (111) and (110) surfaces behave in precisely the same way. The physical mechanism behind the systematics of the EFG for other 5sp impurities (Cd-Ba) at different fcc surfaces sites is revealed, showing in a natural way why the first half of the 5p elements shows a coordination dependence that is opposite with respect to the second half.
机译:我们提出了准确的从头算计算与高质量的实验数据集(1986-2002)之间的比较,该实验数据集是在Ni,Cu,Pd和Ag表面上不同位置处的Cd电场梯度。实验发现了一种系统规则,可基于电场梯度的主要成分在(100)和(111)面上分配表面位置,该规则不适用于(110)面上。我们的计算表明,该特定规则是更一般的基础系统行为的体现。从这个角度看,(100),(111)和(110)曲面的行为方式完全相同。揭示了在不同的fcc表面部位,其他5sp杂质(Cd-Ba)的EFG系统学背后的物理机制,以自然的方式说明了为什么5p元素的前半部分显示出与配体相反的配位依赖性。下半场。

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