Department of Chemical Engineering, §Applied Physics Program, ∥Biointerfaces Institute, #Department of Materials Science and Engineering, and ○Department of Chemistry, University of Michigan , Ann Arbor, Michigan 48109, United States.
Nano Lett. 2014 Dec 10;14(12):6799-810. doi: 10.1021/nl502237f. Epub 2014 Nov 17.
Chiral nanostructures exhibit strong coupling to the spin angular momentum of incident photons. The integration of metal nanostructures with semiconductor nanoparticles (NPs) to form hybrid plasmon-exciton nanoscale assemblies can potentially lead to plasmon-induced optical activity and unusual chiroptical properties of plasmon-exciton states. Here we investigate such effects in supraparticles (SPs) spontaneously formed from gold nanorods (NRs) and chiral CdTe NPs. The geometry of this new type of self-limited nanoscale superstructures depends on the molar ratio between NRs and NPs. NR dimers surrounded by CdTe NPs were obtained for the ratio NR/NP = 1:15, whereas increasing the NP content to a ratio of NR/NP = 1:180 leads to single NRs in a shell of NPs. The SPs based on NR dimers exhibit strong optical rotatory activity associated in large part with their twisted scissor-like geometry. The preference for a specific nanoscale enantiomer is attributed to the chiral interactions between CdTe NP in the shell. The SPs based on single NRs also yield surprising chiroptical activity at the frequency of the longitudinal mode of NRs. Numerical simulations reveal that the origin of this chiroptical band is the cross talk between the longitudinal and the transverse plasmon modes, which makes both of them coupled with the NP excitonic state. The chiral SP NR-NP assemblies combine the optical properties of excitons and plasmons that are essential for chiral sensing, chiroptical memory, and chiral catalysis.
手性纳米结构表现出与入射光子自旋角动量的强耦合。金属纳米结构与半导体纳米粒子 (NPs) 的集成形成了等离子激元-激子纳米级组装体,这可能导致等离子激元诱导的光学活性和等离子激元-激子态的异常手性光学性质。在这里,我们研究了自组装金纳米棒 (NRs) 和手性 CdTe NPs 自发形成的超粒子 (SPs) 中的这些效应。这种新型自限纳米级超结构的几何形状取决于 NR 和 NPs 的摩尔比。对于 NR/NP = 1:15 的比例,获得了由 CdTe NPs 包围的 NR 二聚体,而将 NP 含量增加到 NR/NP = 1:180 的比例则导致 NP 壳中的单个 NR。基于 NR 二聚体的 SPs 表现出强烈的旋光活性,这在很大程度上与其扭曲的剪刀状几何形状有关。对手性纳米级对映体的偏好归因于壳中 CdTe NP 之间的手性相互作用。基于单个 NR 的 SPs 也在手性 NR 的纵向模式频率下产生了令人惊讶的圆二色性活性。数值模拟表明,这种圆二色性带的起源是纵向和横向等离子体模式之间的交叉对话,这使得它们都与 NP 激子态耦合。手性 SP NR-NP 组装体结合了激子和等离子体的光学性质,这对于手性传感、圆二色性记忆和手性催化至关重要。