Advanced Nano Bio Imaging and Spectroscopy (ANBIS) Laboratory, Department of Chemistry, University of Ulsan, 93 Daehak-Ro, Nam-Gu, Ulsan 44610, South Korea.
Analyst. 2017 Mar 13;142(6):899-903. doi: 10.1039/c6an02280d.
Bimetallic core-shell gold nanorods (AuNRs) are promising multifunctional orientation probes that can be employed in biological and physical studies. This paper presents the optical properties of single AuNRs coated with palladium (Pd) and platinum (Pt) under scattering-based dark-field (DF) microscopy. Strong longitudinal plasmon damping was observed for the bimetallic AuNRs due to Pd and Pt metals on the AuNR surface. Despite the strong plasmon damping, the bimetallic AuNRs yielded characteristic doughnut-shaped scattering patterns under defocused DF microscopy. Interestingly, a solid bright spot appeared at the center of the defocused scattering patterns due to strong damping in the longitudinal plasmon and the increased contribution from the transverse dipoles to the image patterns, which was verified further by a simulation study. Furthermore, the defocused scattering field distributions enabled a determination of the three-dimensional (3D) orientations of single bimetallic AuNRs through a pattern-match analysis technique without angular degeneracy. Therefore, deeper insight into the optical properties and defocused scattering patterns of single bimetallic AuNRs is provided, which can be used to develop multifunctional optical probes that are capable of sensing of the 3D orientation of a probe, biomolecules based on LSPR shift, gas and humidity, etc.
双金属核壳金纳米棒(AuNRs)是一种很有前途的多功能定向探针,可用于生物和物理研究。本文介绍了基于散射暗场(DF)显微镜的钯(Pd)和铂(Pt)包覆单 AuNR 的光学性质。由于 AuNR 表面的 Pd 和 Pt 金属,双金属 AuNR 表现出很强的纵向等离子体阻尼。尽管存在很强的等离子体阻尼,但在离焦的 DF 显微镜下,双金属 AuNR 仍呈现出特征的环形散射模式。有趣的是,由于纵向等离子体的强烈阻尼以及横向偶极子对图像模式的贡献增加,在离焦散射模式的中心出现了一个明亮的实心点,这一点通过模拟研究得到了进一步验证。此外,离焦散射场分布通过模式匹配分析技术实现了对单个双金属 AuNR 的三维(3D)取向的确定,而无需角度简并。因此,对单个双金属 AuNR 的光学性质和离焦散射模式有了更深入的了解,这可以用于开发多功能光学探针,能够基于 LSPR 位移、气体和湿度等对探针的 3D 取向进行感应。