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A self-assembled plasmonic optical fiber nanoprobe for label-free biosensing

机译:自组装的等离激元光纤纳米探针用于无标签生物传感

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摘要

The plasmonic optical fiber sensors have attracted wide attention for label-free biosensing application because of their high integration, small footprint and point-of-care measurement. However, the integration of plasmonic nanostructures on optical fiber probes always relies on the top-down nanofabrication approaches, which have several inherent shortcomings, including high cost, time-consuming, and low yields. Here, we develop a plasmonic nanohole-patterned multimode optical fiber probe by self-assembly nanosphere lithography technique with low fabrication cost and high yields. The multimode optical fiber possesses large facet area and high numerical aperture, which not only simplifies fabrication process, but also increases coupling efficiency of incident light. Originating from the resonant coupling of plasmonic modes, the plasmonic fiber nanoprobe has a distinct reflection dip in the spectrum and exhibits strong near-field electromagnetic enhancement. We experimentally investigate the sensing performances of plasmonic fiber nanoprobe, and further demonstrate it in real-time monitoring specific binding of protein molecules. The experimental results imply that the nanohole-patterned multimode optical fiber probe is a good candidate for developing miniaturized and portable biosensing systems.
机译:等离子体光纤传感器具有高度集成,占地面积小和即时测量的特点,因此在无标签生物传感应用中引起了广泛关注。然而,等离激元纳米结构在光纤探针上的集成始终依赖于自上而下的纳米制造方法,该方法具有一些固有的缺点,包括高成本,耗时和低产量。在这里,我们通过自组装纳米球光刻技术开发了一种等离激元纳米孔图案的多模光纤探针,其制造成本低,产量高。多模光纤具有较大的刻面面积和较高的数值孔径,不仅简化了制造工艺,而且提高了入射光的耦合效率。源于等离振子模式的共振耦合,等离激元纤维纳米探针在光谱中具有明显的反射倾角,并表现出很强的近场电磁增强作用。我们实验研究了等离子体纤维纳米探针的传感性能,并进一步证明了它在实时监测蛋白质分子的特异性结合中的作用。实验结果表明,纳米孔图案的多模光纤探头是开发小型化和便携式生物传感系统的理想选择。

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