首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Study on Structural Evolution Thermochemistry and Electron Affinity of Neutral Mono- and Di-Anionic Zirconium-Doped Silicon Clusters ZrSin0/-/2- (n = 6–16)
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Study on Structural Evolution Thermochemistry and Electron Affinity of Neutral Mono- and Di-Anionic Zirconium-Doped Silicon Clusters ZrSin0/-/2- (n = 6–16)

机译:ZrSin0 /-/ 2 /(n = 6-16)的中性单和双阴离子锆掺杂硅团簇的结构演化热化学和电子亲和性的研究

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摘要

We have carried out a global search of systematic isomers for the lowest energy of neutral and Zintl anionic Zr-doped Si clusters ZrSin0/-/2- (n = 6–16) by employing the ABCluster global search method combined with the mPW2PLYP double-hybrid density functional. In terms of the evaluated energies, adiabatic electron affinities, vertical detachment energies, and agreement between simulated and experimental photoelectron spectroscopy, the true global minimal structures are confirmed. The results reveal that structural evolution patterns for neutral ZrSin clusters prefer the attaching type (n = 6–9) to the half-cage motif (n = 10–13), and finally to a Zr-encapsulated configuration with a Zr atom centered in a Si cage (n = 14–16). For Zintl mono- and di-anionic ZrSin-/2-, their growth patterns adopt the attaching configuration (n = 6–11) to encapsulated shape (n = 12–16). The further analyses of stability and chemical bonding make it known that two extra electrons not only perfect the structure of ZrSi15 but also improve its chemical and thermodynamic stability, making it the most suitable building block for novel multi-functional nanomaterials.
机译:我们通过使用ABCluster全局方法对系统异构体进行了全局搜索,以寻找中性和Zintl阴离子Zr掺杂的Si团簇ZrSin 0 /-/ 2-(n = 6-16)的最低能量搜索方法与mPW2PLYP双杂交密度函数结合。根据评估的能量,绝热电子亲和力,垂直脱离能以及模拟和实验光电子能谱之间的一致性,确定了真正的整体最小结构。结果表明,中性ZrSin团簇的结构演化模式更倾向于半笼型基序(n = 10-13)的附着类型(n = 6–9),最后更倾向于以Zr原子为中心的Zr封装结构一个硅笼子(n = 14-16)。对于Zintl单和双阴离子ZrSin -/ 2-,其生长模式采用附着构型(n = 6-11)到封装形状(n = 12-16)。对稳定性和化学键的进一步分析表明,两个额外的电子不仅完善了ZrSi15的结构,而且还改善了其化学和热力学稳定性,使其成为新型多功能纳米材料的最合适的构建基块。

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