School of Physics, Key Laboratory of Cluster Science of Ministry of Education, Beijing Institute of Technology, Beijing, 100081, P R China.
Nanoscale. 2013 May 7;5(9):3889-94. doi: 10.1039/c3nr00148b. Epub 2013 Mar 26.
We fabricate the linear chains of twisted gold nanorods by a facile chiral molecular templating method. In such a chiral plasmonic system, particle-particle separation distances are in the order of the light wavelength and are much larger than the sizes of individual particles. As a result, the inter-particle interactions in this chiral system are mediated mainly by a relatively weak far-field plasmonic coupling, rather than a strong near-field coupling. However, such a chiral system of twisted gold nanorods show a huge surface plasmon based circular dichroism response, with the highest anisotropy factor around 0.027. This is in contrast to the previous studies in which near-field plasmonic coupling is an indispensable prerequisite to obtain strong optical activity from a chiral plasmonic nanostructure. Our study demonstrates here an alternative strategy for achieving huge chiroptical response of a chiral plasmonic nanostructure based on far-field, radiative electromagnetic interactions of metallic nanoparticles. Theoretical simulations show a satisfactory agreement with the experimental results. This study may provide more flexible ways to design chiral plasmon nanostructures with strong CD responses for various applications.
我们通过一种简单的手性分子模板方法制造了扭曲金纳米棒的线性链。在这种手征等离子体系统中,颗粒间的分离距离在光波长的量级,远大于单个颗粒的尺寸。因此,在这个手征系统中,颗粒间的相互作用主要是通过相对较弱的远场等离子体耦合来介导的,而不是强近场耦合。然而,这种扭曲金纳米棒的手征系统表现出巨大的基于表面等离子体的圆二色性响应,其最高各向异性因子约为 0.027。这与之前的研究形成了对比,在之前的研究中,近场等离子体耦合是获得手征等离子体纳米结构强光学活性的不可或缺的前提条件。我们的研究表明,在手征等离子体纳米结构的巨大圆二色性响应方面,基于金属纳米粒子的远场辐射电磁相互作用是一种替代策略。理论模拟与实验结果吻合良好。这项研究可能为设计具有强 CD 响应的手征等离子体纳米结构提供更灵活的方法,以满足各种应用的需求。