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Localized Surface Plasmon Resonance with Five-Branched Gold Nanostars in a Plastic Optical Fiber for Bio-Chemical Sensor Implementation

机译:用于生物化学传感器实现的塑料光纤中具有五分支金纳米星的局部表面等离子体共振。

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In this paper a refractive index sensor based on localized surface plasmon resonance (LSPR) in a Plastic Optical Fiber (POF), is presented and experimentally tested. LSPR is achieved exploiting five-branched gold nanostars (GNS) obtained using Triton X-100 in a seed-growth synthesis. They have the uncommon feature of three localized surface plasmon resonances. The strongest LSPRs fall in two ranges, one in the 600–900 nm range (LSPR 2) and the other one in the 1,100–1,600 nm range (LSPR 3), both sensible to refractive index changes. Anyway, due to the extremely strong attenuation (>102 dB/m) of the employed POF in the 1,100–1,600 nm range, only LSPR 2 will be exploited for refractive index change measurements, useful for bio-chemical sensing applications, as a proof of principle of the possibility of realizing a compact, low cost and easy-to-use GNS based device.
机译:本文提出了一种基于塑料光纤(POF)中局部表面等离子体共振(LSPR)的折射率传感器,并进行了实验测试。通过在种子生长合成中利用Triton X-100获得的五支金纳米星(GNS)来实现LSPR。它们具有三个局部表面等离子体激元共振的罕见特征。最强的LSPR落在两个范围内,一个在600-900 nm范围内(LSPR 2),另一个在1100-1,600 nm范围内(LSPR 3),两者均对折射率变化敏感。无论如何,由于所使用的POF在1,100–1,600 nm范围内的极强衰减(> 10 2 dB / m),因此仅LSPR 2可用于折射率变化测量,这对于生物-化学传感应用,作为实现紧凑,低成本和易于使用的基于GNS的设备的可能性的原理证明。

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