Quantitative analysis of charge transfer plasmons in silver nanocluster dimers using semiempirical methods

被引:0
作者
Sun, Qiwei [1 ]
Ceylan, Yavuz S. [1 ,2 ]
Gieseking, Rebecca L. M. [1 ]
机构
[1] Brandeis Univ, Dept Chem, 415 South St, Waltham, MA 02453 USA
[2] Massachusetts Coll Liberal Arts, Dept Chem, 375 Church St, North Adams, MA 01247 USA
关键词
AG NANOCLUSTERS; DEPENDENCE; SPECTRA; SPECTROSCOPY; ABSORPTION; PARAMETERS; GROUP-11;
D O I
10.1039/d4cp01393j
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Plasmonic metal nanoclusters are widely used in chemistry, nanotechnology, and biomedicine. In metal nanocluster dimers, coupling of the plasmons leads to the emergence of two distinct types of modes: (1) bonding dipole plasmons (BDP), which occurs when charge oscillates synchronously within each nanocluster, and (2) charge transfer plasmons (CTP), which occurs when charge oscillates between two conductively linked nanoclusters. Although TDDFT-based modeling has uncovered some trends in these modes, it is computationally expensive for large dimers, and quantitative analysis is challenging. Here, we demonstrate that the semiempirical quantum mechanical method INDO/CIS enables us to quantify the CTP character of each excited state efficiently. In end-to-end Ag nanowire dimers, the longitudinal states have CTP character that decreases with increasing gap distance and nanowire length. In side-by-side dimers, the transverse states have CTP character and generally larger than in the end-to-end dimers, particularly for the longer nanowires. In side-by-side dimers where one nanowire is shifted along the length of the other, the CTP character of the longitudinal states peaks when the dimer is shifted by two Ag-Ag bond lengths, while the transverse states show decreasing CTP character as displacement increases. In the larger Ag31+ nanorod dimers, CTP character follow a similar distance dependence to that seen in the small nanowire but have smaller overall CTP character than the nanowires. Our study demonstrates that INDO/CIS is capable of modeling metal nanocluster dimers at a low computational cost, making it possible to study larger dimers that are difficult to analyze using TDDFT. The CTP and BDP modes of Ag nanocluster dimers have been studied using INDO/CIS. INDO/CIS is capable of predicting the emergence of CTP modes and quantifying the CTP character in Ag dimers at low computational cost.
引用
收藏
页码:19138 / 19160
页数:23
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