首页> 外文期刊>Physical chemistry chemical physics: PCCP >Evolution of the structural, energetic, and electronic properties of the 3d, 4d, and 5d transition-metal clusters (30 TMn systems for n=2-15): a density functional theory investigation
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Evolution of the structural, energetic, and electronic properties of the 3d, 4d, and 5d transition-metal clusters (30 TMn systems for n=2-15): a density functional theory investigation

机译:3D,4D和5D过渡金属簇的结构,能量和电子特性的演变(用于N = 2-15的30 TMN系统):密度泛函理论调查

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摘要

Subnanometric transition-metal (TM) clusters have attracted great attention due to their unexpected physical and chemical properties, leastwise compared to their bulk counterparts. An in-depth understanding of the evolution of the properties as a function of the number of atoms for such systems is a basic prerequisite to leverage countless applications, from catalysis to magnetic storage, as well as to answer fundamental questions related to their intrinsic stability. Here, we reported a systematic density functional study to investigate the structural, electronic properties and stability of all TMn (30 elements) unary clusters as a function of the number of atoms (n = 2-15). We provided the complete structural patterns for all TM periodic table groups, considering the growth evolution as well as the main trends of the structural and electronic properties. The combination of the occupation of the bonding/anti-bonding d-states and the s-d hybridization is found to be the main stabilization mechanism, helping in the understanding of the structural patterns. Most TMn clusters have a magic number of atoms, for which there are peaks in s-d hybridization and null electric dipole moments. Thus, our extensive and comparative study addresses size effects along with the evolution of d-orbital occupation for the TMn gas-phase cluster properties.
机译:由于它们的意外的物理和化学性质,与其散装对应物相比,亚域转变金属(TM)簇引起了极大的关注。对这种系统的原子数量的函数的深入理解是用于利用无数应用的基本先决条件,从催化到磁力存储,以及回答与其内在稳定性相关的基本问题。在这里,我们报道了一种系统密度函数研究,以研究所有TMN(30个元素)联合簇的结构,电子性质和稳定性,作为原子数的函数(n = 2-15)。我们为所有TM周期性表组提供了完整的结构模式,考虑到增长演变以及结构和电子特性的主要趋势。发现键合/抗粘合D-态的占用和S-D杂交的组合是主要的稳定机制,有助于了解结构模式。大多数TMN集群具有奇怪的原子数,其中S-D杂交和零电偶极矩有峰。因此,我们的广泛和比较研究解决了TMN气相簇属性的D-轨道占用的演变。

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