Department of Electrical and Computer Engineering, Department of Physics and Astronomy, Laboratory for Nanophotonics, Rice Quantum Institute, Rice University, 6100 Main Street, Houston, Texas 77005, USA.
Nanoscale. 2013 Oct 21;5(20):9897-901. doi: 10.1039/c3nr02835f.
A conductive substrate can provide a simple and straightforward way to induce charge-transfer plasmon modes in Au nanoparticle clusters. For a simple dimer structure, a remarkably narrow charge transfer plasmon, which differs dramatically from the dipolar plasmon mode of the electrically isolated nanostructure, is clearly observed. For a more complex nonamer cluster that supports a strong Fano resonance on an insulating substrate, a mixed charge transfer-dipole mode is observed, where charge transfer is induced on the outer nanoparticles, establishing an opposing dipole on the intervening central particles, resulting in a strongly damped far field response.
导电衬底为在金纳米粒子簇中诱导电荷转移等离激元模式提供了一种简单直接的方法。对于简单的二聚体结构,可以清楚地观察到明显狭窄的电荷转移等离激元,与电隔离纳米结构的偶极子等离激元模式有很大不同。对于在绝缘衬底上支持强 Fano 共振的更复杂的非盟体簇,观察到混合的电荷转移-偶极子模式,其中在外层纳米粒子上诱导电荷转移,在中间的中心粒子上建立相反的偶极子,导致强烈阻尼的远场响应。