纳米团簇
杂原子
密度泛函理论
电子结构
电负性
铜
星团(航天器)
结晶学
带隙
化学
化学物理
含时密度泛函理论
轨道能级差
材料科学
计算化学
原子物理学
分子物理学
纳米技术
物理
分子
光电子学
有机化学
程序设计语言
计算机科学
戒指(化学)
作者
Michael J. Hartmann,Hannu Häkkinen,Jill E. Millstone,Daniel S. Lambrecht
摘要
Here, we use density functional theory to model the impact of heteroatom position on the optoelectronic properties of mixed metal nanoclusters. First, we consider the well-described [Au25(SH)18]− motif, and substitute Cu atoms at the three geometrically unique positions within the cluster. These clusters are atomically precise and show an electronic structure that is a function of both composition and heteroatom position. We then model clusters containing Cu substitutions at two positions, and demonstrate an additional and significant impact from heteroatom proximity with respect to one another. For each system, we report the formation energy, HOMO–LUMO gap, and energy level structure, and suggest how trends in these parameters may be explained using classic atomic descriptors such as electronegativity, analogous to design principles widely used in the field of organic electronics. Further, we use linear response time-dependent density functional theory to model the absorption behavior of each system in order to correlate these electronic properties with a convenient experimental readout.
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