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同质局域表面等离子体共振拐点可提高灵敏度并跟踪单金双锥体中的等离子体阻尼。

Homogeneous localized surface plasmon resonance inflection points for enhanced sensitivity and tracking plasmon damping in single gold bipyramids.

机构信息

Department of Chemistry, University of Ulsan, 93 Daehak-ro, Nam-gu, Ulsan 44610, Republic of Korea.

出版信息

Nanoscale. 2018 Jul 9;10(26):12554-12563. doi: 10.1039/c8nr03311k.

Abstract

The most polarizable localized surface plasmon resonance (LSPR) longitudinal mode of anisotropic metallic nanoparticles, such as gold bipyramids (AuBPs), is of high prominence. This optical response has tremendous applications from spectroscopy to photonics and energy devices to sensing. In conventional LSPR-based sensing, broadening and asymmetry in peaks due to chemical and instrument noise hinder obtaining a precise insight on shift positions, accordingly limiting the effectiveness and impact of LSPR sensors. Further, when investigating LSPR properties, utilizing more simplistic frequency dependent dielectric-type models can aberrantly impact the reliability of fundamental properties used for designing and fabricating efficient optical devices. For instance, more approximations can effectively limit screening intra-band and inter-band (IB) electronic transition contributions and other related optical properties. With an aim to find alternative methods to further improve their efficiency, as a first report, we devoted a particular focus on LSPR scattering inflection points (IFs) of single AuBPs. The findings reveal that tracking LSPR IFs exhibit high sensitivity over their counterpart LSPR peak shift locations. In addition, we newly detected IB transition contributions near the resonance energy in the range (1.50 eV-2.00 eV) dominated by intra-band transitions. A small increase in the local RI effectively enhances the LSPR quality factor due to IB transitions. Therefore, while neglecting IB transitions in the range below 2.4 eV can work for local air refractive index (RI), in high local RI media it can be aberrantly underestimated. Demonstrated by the use of the dielectric function based on Kramers-Kronig consistent Lorentz oscillators, our findings are in good agreement with the enhancing RI sensitivity effect. The results of this investigation support the idea that tracking curvature changes of an optical signal can be effectively used for LSPR longitudinal peak RI sensing as well as damping in the local RI environment of a single AuBP.

摘要

各向异性金属纳米粒子(如金双锥体(AuBPs))的最极化局域表面等离子体共振(LSPR)纵向模式具有很高的重要性。这种光学响应在从光谱学到光子学和能源设备到传感的应用中具有巨大的应用潜力。在传统的基于 LSPR 的传感中,由于化学和仪器噪声引起的峰展宽和不对称性阻碍了对位移位置的精确洞察,从而限制了 LSPR 传感器的有效性和影响力。此外,在研究 LSPR 性质时,利用更简单的频率相关介电型模型可能会异常影响用于设计和制造高效光学器件的基本性质的可靠性。例如,更多的近似可以有效地限制屏蔽内带和间带(IB)电子跃迁贡献和其他相关的光学性质。为了寻找进一步提高其效率的替代方法,作为第一项研究,我们特别关注单个 AuBP 的 LSPR 散射拐点(IF)。研究结果表明,跟踪 LSPR IF 比其 LSPR 峰位移位置具有更高的灵敏度。此外,我们在由内带跃迁主导的共振能量附近(1.50 eV-2.00 eV)范围内新检测到 IB 跃迁贡献。局部折射率的微小增加由于 IB 跃迁而有效地提高了 LSPR 质量因子。因此,虽然在低于 2.4 eV 的范围内忽略 IB 跃迁对于局部空气折射率(RI)有效,但在高局部 RI 介质中可能会异常低估。基于基于 Kramers-Kronig 一致洛伦兹振子的介电函数的使用证明了这一点,我们的发现与增强 RI 灵敏度效应非常吻合。这项研究的结果支持这样一种观点,即跟踪光学信号的曲率变化可以有效地用于 LSPR 纵向峰值 RI 传感以及单个 AuBP 局部 RI 环境中的阻尼。

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