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Nanoscale patterning of gold-coated optical fibers for improved plasmonic sensing

机译:镀金光纤的纳米级图案化改善等离子体传感

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摘要

Merging surface plasmon resonance (SPR) to fiber optic (FO) technology has brought remarkable achievements in the field by offering attractive advantages over the conventional prism-based SPR platforms, such as simplicity, cost-effectiveness and miniaturization. However, the performance of the existing FO-SPR instruments mainly depends on the device surface condition and in particular on the structural aspect of the thin gold (Au) plasmonic film deposited on the FO substrate. In this work, a simple cost-effective colloidal lithography technique (CLT) was adapted and applied for the first time to the micrometer-sized FO substrate, to design end reflection-type FO-SPR sensors with periodic arrays of Au triangularly-shaped nanostructures on the Au mirror FO tip distal end. The nanopatterned FO-SPR sensor tips were afterwards subjected to refractometric measurements in a sucrose dilution series and subsequently compared with their non-patterned counterparts. It was observed that the spectral dips of the nanopatterned FO-SPR sensor tips were shifted towards longer wavelengths after CLT patterning. Moreover, the sensor sensitivity was improved with up to 25% compared to the conventional non-patterned FO-SPR devices. The obtained results represent important steps in the development of a new generation of FO-SPR sensors with improved performance, which can ultimately be used in various applications, ranging from food analysis and environmental monitoring, to health control and medical diagnosis.
机译:通过在基于传统的棱镜的SPR平台上提供有吸引力的优势,将表面等离子体共振(SPR)与光纤(FO)技术带来了显着的成果,例如简单,成本效益和小型化。然而,现有FO-SPR仪器的性能主要取决于器件表面条件,特别是沉积在FO基板上的薄金(AU)等离子体膜的结构方面。在这项工作中,将一种简单的经济高效的胶合光刻技术(CLT)适用于第一次施加到微米尺寸的FO基板上,以设计具有定期阵列的Au三角形纳米结构的端反射型FO-SPR传感器在Au镜子上尖端末端。之后,纳米纹状理由的FO-SPR传感器提示在蔗糖稀释系列中进行折射率测量,随后与其非图案化对应物进行比较。观察到,在CLT图案化之后,纳米纹状PO-SPR传感器尖端的光谱倾斜朝向更长的波长移位。此外,与传统的非图案化FO-SPR器件相比,传感器灵敏度高达25%。所获得的结果代表了开发具有改进性能的新一代FO-SPR传感器的重要步骤,这可能最终用于各种应用,从食物分析和环境监测,健康控制和医学诊断。

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