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首页> 外文期刊>International Journal of Quantum Chemistry >Symmetry lowering by cage doping in spherical superatoms: Evaluation of electronic and optical properties of 18-electron W@Au12Ptn (n=0-4) superatomic clusters from relativistic DFT calculations
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Symmetry lowering by cage doping in spherical superatoms: Evaluation of electronic and optical properties of 18-electron W@Au12Ptn (n=0-4) superatomic clusters from relativistic DFT calculations

机译:通过笼子掺杂的对称性降低了球形超超图像:从相对论DFT计算的18-Electron W @ Au12ptn(n = 0-4)超自眼簇的电子和光学性质评估

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摘要

Attempts to expand the versatility of well defined clusters are a relevant issue in the design of building blocks for functional nanostructures. Here, we investigate the plausible formation of related structures from the emblematic highly symmetrical 18-e [W@Au-12] cluster. The calculated [W@Au12Ptn] series, with n = 0, 1, 2, 3, and 4, show cohesion energies, HOMO-LUMO gap, adiabatic electron affinities (AEAs) and adiabatic ionization potentials (AIPs), indicating a relative stability to the parent cluster [W@Au-12] experimentally characterized, where clusters with n = 1 and n = 4 are suggested as the most stable with respect to oxidation. The resulting symmetry lowering away from the high icosahedral symmetry upon adding Pt atoms induces a sizable splitting of the frontiers shells, which in turn effectively modify the properties of the calculated clusters, as observed from calculated optical properties. The estimated absorption spectra show an interesting broadening effect of the absorption peaks, which appears as a useful approach for further design of broad black absorbers, which are able to absorb light in a wider range, with potential capabilities to enhance the efficiency of thin film solar cells and photocatalysis processes, among other applications.
机译:扩展良好定义的集群的多功能性的尝试是用于功能纳米结构的构建块设计中的相关问题。在这里,我们研究了从标志性高度对称的18-E [W @ AU-12]集群的相关结构的合理形成。计算出的[W @ AU12PTN]系列,N = 0,1,2,3和4,显示凝聚能量,Homo-Lumo间隙,绝热电子亲和力(AEA)和绝热电离电位(AIP),表明相对稳定性到父群[W @ AU-12]实验表征,其中具有n = 1和n = 4的簇被提出为相对于氧化最稳定的簇。由此产生的对称性在添加Pt原子时降低了高ICOSaheShral对称性,导致前端壳的相当大的分裂,这又有效修改计算出的簇的特性,如从计算出的光学性质所观察到的。估计的吸收光谱显示出吸收峰的有趣扩大效果,这表现为进一步设计宽黑色吸收剂的有用方法,这能够吸收更宽范围的光,具有提高薄膜太阳能效率的潜在能力在其他应用中,细胞和光催化过程。

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