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LSPR and Interferometric Sensor Modalities Combined Using a Double-Clad Optical Fiber

机译:结合使用双包层光纤的LSPR和干涉式传感器

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摘要

We report on characterization of an optical fiber-based multi-parameter sensor concept combining localized surface plasmon resonance (LSPR) signal and interferometric sensing using a double-clad optical fiber. The sensor consists of a micro-Fabry-Perot in the form of a hemispherical stimuli-responsive hydrogel with immobilized gold nanorods on the facet of a cleaved double-clad optical fiber. The swelling degree of the hydrogel is measured interferometrically using the single-mode inner core, while the LSPR signal is measured using the multi-mode inner cladding. The quality of the interferometric signal is comparable to previous work on hydrogel micro-Fabry-Perot sensors despite having gold nanorods immobilized in the hydrogel. We characterize the effect of hydrogel swelling and variation of bulk solution refractive index on the LSPR peak wavelength. The results show that pH-induced hydrogel swelling causes only weak redshifts of the longitudinal LSPR mode, while increased bulk refractive index using glycerol and sucrose causes large blueshifts. The redshifts are likely due to reduced plasmon coupling of the side-by-side configuration as the interparticle distance increases with increasing swelling. The blueshifts with increasing bulk refractive index are likely due to alteration of the surface electronic structure of the gold nanorods donated by the anionic polymer network and glycerol or sucrose solutions. The recombination of biotin-streptavidin on gold nanorods in hydrogel showed a 7.6 nm redshift of the longitudinal LSPR. The LSPR response of biotin-streptavidin recombination is due to the change in local refractive index (RI), which is possible to discriminate from the LSPR response due to changes in bulk RI. In spite of the large LSPR shifts due to bulk refractive index, we show, using biotin-functionalized gold nanorods binding to streptavidin, that LSPR signal from gold nanorods embedded in the anionic hydrogel can be used for label-free biosensing. These results demonstrate the utility of immobilizing gold nanorods in a hydrogel on a double-clad optical fiber-end facet to obtain multi-parameter sensing.
机译:我们报告结合基于双包层光纤的局部表面等离子体共振(LSPR)信号和干涉传感的基于光纤的多参数传感器概念的表征。该传感器由呈半球形刺激响应水凝胶形式的微型法布里-珀罗(Fabry-Perot)构成,在分裂的双包层光纤的端面上固定有金纳米棒。水凝胶的溶胀度通过单模内芯干涉测量,而LSPR信号使用多模内包层测量。尽管金纳米棒固定在水凝胶中,但干涉信号的质量可与之前在水凝胶微法布里-珀罗传感器上的工作相媲美。我们表征水凝胶溶胀和体溶液折射率变化对LSPR峰值波长的影响。结果表明,pH诱导的水凝胶溶胀仅引起纵向LSPR模式的弱红移,而使用甘油和蔗糖增加的总折射率导致大的蓝移。红移很可能是由于随着颗粒间距离随着溶胀的增加而增加,并列构型的等离激元耦合降低。体折射率增加的蓝移很可能是由于阴离子聚合物网络和甘油或蔗糖溶液捐赠的金纳米棒的表面电子结构发生了变化。生物素-链霉亲和素在水凝胶中的金纳米棒上的重组显示出纵向LSPR的7.6 nm红移。生物素-链霉亲和素重组的LSPR反应归因于局部折射率(RI)的变化,这可能与由于整体RI的变化而引起的LSPR反应有所区别。尽管由于体积折光指数而导致较大的LSPR位移,但我们使用结合链霉亲和素的生物素官能化金纳米棒显示,嵌入阴离子水凝胶的金纳米棒的LSPR信号可用于无标记生物传感。这些结果证明了将金纳米棒固定在双包层光纤端面上的水凝胶中以获得多参数感测的实用性。

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