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单金纳米立方体顶点局域表面等离子体共振拐点的折射率灵敏度的形状效应。

Shape Effect on the Refractive Index Sensitivity at Localized Surface Plasmon Resonance Inflection Points of Single Gold Nanocubes with Vertices.

机构信息

Advanced Nano-Bio-Imaging and Spectroscopy Laboratory, Department of Chemistry, University of Ulsan, 93 Daehak-Ro, Nam-Gu, Ulsan, 44610, South Korea.

出版信息

Sci Rep. 2019 Sep 20;9(1):13635. doi: 10.1038/s41598-019-50032-3.

Abstract

Plasmonic gold nanoparticles with sharp tips and vertices, such as gold bipyramids (AuBPs) and gold nanocubes (AuNCs), have been widely used for high-sensitivity localized surface plasmon resonance (LSPR) sensing. However, conventional LSPR sensors based on frequency shifts have a major disadvantage: the asymmetry and broadening of LSPR peaks because of instrumental, environmental, and chemical noises that limit the precise determination of shift positions. Herein, we demonstrated an alternative method to improve the efficiency of the sensors by focusing on homogeneous LSPR scattering inflection points (IFs) of single gold nanoparticles with a single resonant mode. In addition, we investigated the effect of the shape and vertices of AuNCs on the refractive index (RI) sensitivity of homogeneous LSPR IFs by comparing with gold nanospheres (AuNSs) of similar size. The results show that for both AuNCs and AuNSs, tracking homogeneous LSPR IFs allows for higher RI sensitivity than tracking the frequency shifts of the LSPR peaks. Furthermore, single AuNCs with vertices exhibited higher RI sensitivity than single AuNSs of similar size in the homogeneous LSPR IFs. Therefore, we provided a deeper insight into the RI sensitivity of homogeneous LSPR IFs of AuNCs with vertices for their use in LSPR-based biosensors.

摘要

具有尖锐尖端和顶点的等离子体金纳米粒子,如金双锥体(AuBPs)和金纳米立方体(AuNCs),已被广泛用于高灵敏度的局域表面等离子体共振(LSPR)传感。然而,基于频率位移的传统 LSPR 传感器有一个主要的缺点:由于仪器、环境和化学噪声的影响,LSPR 峰的不对称和展宽限制了位移位置的精确确定。在此,我们通过聚焦于具有单一共振模式的单个金纳米粒子的同质 LSPR 散射拐点(IF),展示了一种提高传感器效率的替代方法。此外,我们通过与相似尺寸的金纳米球(AuNSs)进行比较,研究了 AuNCs 的形状和顶点对同质 LSPR IF 的折射率(RI)灵敏度的影响。结果表明,对于 AuNCs 和 AuNSs,跟踪同质 LSPR IF 比跟踪 LSPR 峰的频率位移更能提高 RI 灵敏度。此外,在同质 LSPR IF 中,具有顶点的单个 AuNCs 比相似尺寸的单个 AuNSs 表现出更高的 RI 灵敏度。因此,我们为具有顶点的 AuNCs 的同质 LSPR IF 的 RI 灵敏度提供了更深入的了解,以将其用于基于 LSPR 的生物传感器中。

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