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首页> 外文期刊>Angewandte Chemie >Anomalous Diamagnetic Susceptibility in 13-Atom Platinum Nanocluster Superatoms
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Anomalous Diamagnetic Susceptibility in 13-Atom Platinum Nanocluster Superatoms

机译:13原子铂纳米团簇超原子中反磁性的磁化率

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We are used to being able to predict diamagnetic susceptibilities X_D to a good approximation in atomic increments since there is normally little dependence on the chemical environment. Surprisingly, we find from SQUID magnetization measurements that the X_D per Pt atom of zeolite-supported Pt_(13) nanoclusters exceeds that of Pt~(2+) ions by a factor of 37-50. The observation verifies an earlier theoretical prediction. The phenomenon can be understood nearly quantitatively on the basis of a simple expression for diamagnetic susceptibility and the superatom nature of the 13-atom near-spherical cluster. The two main contributions come from ring currents in the delocalized hydride shell and from cluster molecular orbitals hosting the Pt 5d and Pt 6s electrons.
机译:由于通常对化学环境的依赖性很小,因此我们习惯于以原子增量很好地预测抗磁化率X_D。出乎意料的是,我们从SQUID磁化测量发现,沸石负载的Pt_(13)纳米簇的每Pt原子的X_D超过Pt〜(2+)离子的X_D达37-50。该观察结果验证了较早的理论预测。基于抗磁化率和13个原子的近球形簇的超原子性质的简单表达式,可以几乎定量地理解该现象。这两个主要贡献来自于非定域氢化物壳中的环流以及来自托管Pt 5d和Pt 6s电子的分子簇轨道。

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