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首页> 外文期刊>Physical chemistry chemical physics: PCCP >First-principles calculations of the electronic structure and bonding in metal cluster-fullerene materials considered within the superatomic framework
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First-principles calculations of the electronic structure and bonding in metal cluster-fullerene materials considered within the superatomic framework

机译:在超原子框架内考虑的金属团簇-富勒烯材料中电子结构和键合的第一性原理计算

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Inspired by recent success of synthesizing cluster assembled compounds we address the question to what extent the three new materials [Co6Se8(PEt3)(6)][C-60](2), [Cr6Te8(PEt3)(6)][C-60](2), and [Ni9Te6(PEt3)(8)] C-60, upon forming bulk compounds, imitate atomic analogues. Although experimental results suggest the latter, a theoretical approach is the method of choice for offering a conclusive answer and for studying the actual superatomic character. The concept of superatoms for describing atom-imitating clusters is very intriguing since it allows chemists to apply their chemical intuition - a useful tool for predicting new materials - when it comes to inter-cluster reactions. Thus, we systematically study the lattice structure, the intercluster binding, and the electronic structure by density functional theory and assess them in terms of their superatomic features. We show that collective properties arise upon bulk formation, which promotes arguments for the formation of solids in which the constituent clusters have a superatomic character that determines some form of chemical bonding. Additionally, we find evidence for the formation of superatomic states. Unfortunately, however, due to the mixing of electronic states of transition metals and chalcogen atoms, no typical electronic shell closing in the cluster cores can be identified.
机译:受最近合成簇组装化合物成功的启发,我们解决了以下问题:三种新材料[Co6Se8(PEt3)(6)] [C-60](2),[Cr6Te8(PEt3)(6)] [C- 60](2)和[Ni9Te6(PEt3)(8)] C-60在形成本体化合物后模仿原子类似物。尽管实验结果表明了后者,但理论方法是提供结论性答案和研究实际超原子特性的选择方法。描述原子模仿簇的超级原子的概念非常吸引人,因为当涉及簇间反应时,它允许化学家运用其化学直觉(一种预测新材料的有用工具)。因此,我们通过密度泛函理论系统地研究了晶格结构,簇间键合和电子结构,并根据它们的超原子特征对其进行了评估。我们表明集体性质出现在本体形成时,这引起了固体形成的争论,在该固体中,组成簇具有决定某种化学键合形式的超原子特征。此外,我们发现了形成超原子态的证据。但是,不幸的是,由于过渡金属和硫族元素原子的电子状态混合,无法确定簇状核中典型的电子壳闭合。

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