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首页> 外文期刊>Angewandte Chemie >Insulating or Metallic: Coexistence of Different Electronic Phases in Zinc Clusters
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Insulating or Metallic: Coexistence of Different Electronic Phases in Zinc Clusters

机译:绝缘或金属:锌簇中不同电子相的共存

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摘要

How many of the several attributes of the bulk metallic state persist in a nanoparticle containing a finite number of atoms of a metallic element? Do all those attributes emerge suddenly at a well-defined cluster size or do they rather evolve at different rates and in a broad size range? These fundamental questions have been addressed through a conjoint experimental/theoretical investigation of zinc clusters. We report the observation of novel coexistence phenomena involving different electronic phases: for some sizes, metallic and insulating electronic states coexist within a single, Janus-like, nanoparticle; for the rest of sizes, we report the coexistence of two weakly interacting metallic phases with different dimensionalities, localized at the shell and the core of the nanoparticle. These fascinating features are due to an anomalously long core-shell separation that equips the shell and core regions with largely independent structural, vibrational, and thermal properties.
机译:在包含有限数量金属元素原子的纳米粒子中,本体金属态的几个属性中有多少个保留?所有这些属性会突然以明确定义的簇大小出现,还是以不同的速率和更大的范围演化?这些基本问题已通过对锌团簇的联合实验/理论研究得到解决。我们报告了涉及不同电子相的新型共存现象的观察结果:对于某些尺寸,金属和绝缘电子态共存于单个Janus状纳米粒子中;对于其余的尺寸,我们报告了位于纳米粒子的壳和核之间的两种具有不同尺寸的弱相互作用金属相的共存。这些令人着迷的特征是由于异常长的核-壳分离,使壳和核区域具有很大程度上独立的结构,振动和热性能。

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