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金纳米棒二聚体和三聚体中反键模式的系统研究。

Systematic study of antibonding modes in gold nanorod dimers and trimers.

机构信息

Department of Materials Science and Engineering, ‡Department of Chemistry, and International Institute for Nanotechnology, Northwestern University , Evanston, Illinois 60208, United States.

出版信息

Nano Lett. 2014 Dec 10;14(12):6949-54. doi: 10.1021/nl503207j. Epub 2014 Nov 20.

Abstract

Using on-wire lithography to synthesize well-defined nanorod dimers and trimers, we report a systematic study of the plasmon coupling properties of such materials. By comparing the dimer/trimer structures to discrete nanorods of the same overall length, we demonstrate many similarities between antibonding coupled modes in the dimers/trimers and higher-order resonances in the discrete nanorods. These conclusions are validated with a combination of discrete dipole approximation and finite-difference time-domain calculations and lead to the observation of antibonding modes in symmetric structures by measuring their solution-dispersed extinction spectra. Finally, we probe the effects of asymmetry and gap size on the occurrence of these modes and demonstrate that the delocalized nature of the antibonding modes lead to longer-range coupling compared to the stronger bonding modes.

摘要

利用在线光刻技术合成具有良好定义的纳米棒二聚体和三聚体,我们对这些材料的等离子体耦合特性进行了系统研究。通过将二聚体/三聚体结构与相同总长度的离散纳米棒进行比较,我们证明了二聚体/三聚体中的非键合耦合模式与离散纳米棒中的高阶共振之间存在许多相似之处。这些结论通过离散偶极子近似和有限差分时域计算的组合得到验证,并通过测量其溶液分散消光谱来观察对称结构中的非键合模式。最后,我们研究了不对称和间隙大小对这些模式出现的影响,并证明了非键合模式的离域性质导致了与更强键合模式相比更长的耦合范围。

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