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Optical properties of pure and core-shell noble-metal nanoclusters from TDDFT:The influence of the atomic structure

机译:TDDFT制备的纯净和核壳型贵金属纳米簇的光学性质:原子结构的影响

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摘要

Pseudopotential time-dependent density-functional theory (TDDFT) calculations are carried out to investigate the optical absorption spectra of magic-number noble-metal nanoparticles of 13, 38, 55, 140, and 147 atoms. In particular, we study the differences between isomeric structures such as Ag_(13) in both cubic and icosahedral structures. Differences are well visible up to sizes of about 55 atoms, demonstrating the need for proper treatment of the structural details on the atomic level. For the largest sizes of about 150 atoms, our calculations confirm earlier results of TDDFT using a structureless jellium model. In particular, we recover the surface plasmon resonance for silver nanoclusters. The bimetallic Ag_(32)Au_6 core-shell cluster displays an intense peak corresponding to the surface-plasmon resonance in the Ag cluster, but the spectrum does not lie between the spectra of the pure Ag_(38) and Au_(38) clusters. By contrast, a copper core in a Ag_(38)Cu_6 cluster leads to a strong damping of this peak.
机译:进行了伪电势随时间变化的密度泛函理论(TDDFT)计算,以研究13、38、55、140和147个原子的幻数贵金属纳米粒子的光吸收光谱。特别是,我们研究了立方和二十面体结构中Ag_(13)等异构结构之间的差异。差异非常明显,最大约为55个原子,这表明需要在原子水平上正确处理结构细节。对于约150个原子的最大尺寸,我们的计算证实了使用无结构胶体模型的TDDFT早期结果。特别是,我们恢复了银纳米团簇的表面等离子体共振。双金属Ag_(32)Au_6核-壳簇显示出一个与Ag簇中的表面等离子体共振相对应的强峰,但光谱不在纯Ag_(38)和Au_(38)簇的光谱之间。相比之下,Ag_(38)Cu_6簇中的铜芯导致对该峰的强烈阻尼。

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