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Design and fabrication of a multimode optical fiber surface plasmon resonance urea biosensor††

机译:多模光纤表面等离子体共振尿素生物传感器的设计和制作

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Optical fiber surface plasmon resonance (SPR) sensors are widely used in concentration measurement. Conventional approaches usually exploit wet electroless plating to deposit silver film on the surface of the core of optical fiber to produce surface plasmon resonance effect. The inability to accurately control and measure the thickness of metal growth is a drawback of chemical methods to prepare optical fiber SPR sensors. Here, we propose an indirect method to measure the thickness of metal film and design an experiment to control the thickness of metal film by using gradient concentration solution. We also discuss the design and fabrication of a multimode optical fiber SPR urea biosensor. In addition, we build a reflective fiber optic sensor system. We test the performance of different thicknesses of the sensor probe in solution. The best sensitivity is about 31.7 nm/M from 0 to 1 M.
机译:光纤表面等离子体谐振(SPR)传感器广泛用于浓度测量。 常规方法通常利用湿化学镀层来沉积在光纤芯的表面上的银膜,以产生表面等离子体共振效应。 无法准确控制和测量金属生长的厚度是制备光纤SPR传感器的化学方法的缺点。 在这里,我们提出了一种间接方法来测量金属膜的厚度并设计通过使用梯度浓度溶液来控制金属膜厚度的实验。 我们还讨论了多模光纤SPR尿素生物传感器的设计和制作。 此外,我们建立了一个反射光纤传感器系统。 我们在解决方案中测试传感器探头的不同厚度的性能。 最佳敏感度约为31.7nm / m,从0到1米。

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