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Thin metal bilayer for surface plasmon resonance sensors in a multimode plastic optical fiber: the case of palladium and gold metal films

机译:多模塑料光纤中用于表面等离子体共振传感器的薄金属双层:以钯和金金属膜为例

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A novel sensing platform based on thin metal bilayer for surface plasmon resonance (SPR) in a D-shaped plastic optical fiber (POF) has been designed, implemented and tested. The experimental results are congruent with the numerical studies. This platform has been properly optimized to work in the 1.38-1.42 refractive index range and it exhibits excellent sensitivity. This refractive index range is very interesting for bio-chemical applications, where the polymer layer are used as receptors (e.g. molecularly imprinted polymer) or to immobilize the bio-receptor on the metal surface. The proposed metallic bilayer is based on palladium and gold films and replaces the traditional gold by exhibiting higher performances. Furthermore, the deposition of the thin bilayer is a single process and no further manufacturing step is required. In fact, in this case the photoresist buffer layer between the POF core and the metal layer, usually required to increase the refractive index range, is no longer necessary.
机译:设计,实现和测试了一种基于薄金属双层的新型传感平台,该平台用于D形塑料光纤(POF)中的表面等离子体共振(SPR)。实验结果与数值研究吻合。该平台已经过适当优化,可在1.38-1.42折射率范围内工作,并具有出色的灵敏度。对于聚合物层用作受体(例如分子印迹聚合物)或将生物受体固定在金属表面上的生物化学应用来说,该折射率范围是非常令人感兴趣的。拟议的金属双层基于钯和金膜,并通过表现出更高的性能来替代传统的金。此外,薄双层的沉积是单个过程,并且不需要进一步的制造步骤。实际上,在这种情况下,不再需要通常需要增加折射率范围的POF芯和金属层之间的光致抗蚀剂缓冲层。

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