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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Theoretical Analysis of the M12Ag32(SR)(40)(4-) and X@M12Ag32(SR)(30)(4-) Nanoclusters (M = Au, Ag; X = H, Mn)
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Theoretical Analysis of the M12Ag32(SR)(40)(4-) and X@M12Ag32(SR)(30)(4-) Nanoclusters (M = Au, Ag; X = H, Mn)

机译:M12Ag32(SR)(40)(4-)和X @ M12Ag32(SR)(30)(4-)纳米团簇的理论分析(M = Au,Ag; X = H,Mn)

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摘要

We analyze the electronic structure and optical properties of the recently reported, structurally known M12Ag32(SR)(30)(4-) clusters (M = Au, Ag) by using density functional theory and time-dependent density functional perturbation theory. Effects of the chemical changes in the metal core, charge of the cluster, and nature of the thiolate ligand on the electronic structure and optical absorption are reported. In addition, doping the metal core with a magnetic transition metal atom (Mn) or hydrogen (protons) is discussed. Although all these clusters can be considered as 18-electron superatoms with a shell configuration 1S(2) 1P(6) 1D(10), we find that the optical spectrum is sensitive to the charge state and chemical composition of the core and that all optical transitions in the visible range have important contributions from the electron-rich aromatic ligands. Added protons work as counter-cations reducing the overall charge but keeping the stable 18-electron configuration. Finally, our calculations predict that doping the center hole of the metal core by a manganese atom makes the cluster a 20-electron superatom with a configuration 1S(2) 1P(6) 1D(10) 2S(2) but keeps the maximal spin-moment localized at the dopant in a Mn(3d(5)) configuration by the Hund rule.
机译:我们通过使用密度泛函理论和随时间变化的密度泛函微扰理论分析了最近报道的,结构已知的M12Ag32(SR)(30)(4-)团簇(M = Au,Ag)的电子结构和光学性质。报告了金属核中化学变化,簇的电荷以及硫醇盐配体的性质对电子结构和光吸收的影响。此外,讨论了用磁过渡金属原子(Mn)或氢(质子)掺杂金属核。尽管所有这些簇都可以被视为具有壳结构1S(2)1P(6)1D(10)的18电子超原子,但我们发现光谱对核的电荷状态和化学组成敏感,并且所有可见光范围内的光学跃迁对富电子芳族配体起重要作用。添加的质子作为抗衡阳离子,可减少总电荷,但保持稳定的18电子构型。最后,我们的计算预测,通过用锰原子掺杂金属芯的中心孔,可使团簇成为20电子超原子,其构型为1S(2)1P(6)1D(10)2S(2),但保持最大自旋-H矩通过Hund法则定位在Mn(3d(5))构型的掺杂剂上。

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