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Nano-textured POF Surfaces to Enhance the Sensitivity of Low Concentration HF Sensors

机译:纳米纹理的POF表面,提高低浓度HF传感器的灵敏度

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This paper describes the possibility of enhancing the sensitivity of plastic optical fiber (POF) sensors for hydrogen fluoride vapours through a surface treatment of the polymeric core, performed in low pressure plasma. These high sensitivity POF sensors are realized by removing the cladding and performing a plasma nanotexturing of the core surface using oxygen/argon plasma treatments;; then a thin, SiO2-like layer is deposited onto the nanotextured fibres core. The SiO2-like layer reacts with the HF vapours modifying the fibre response in terms of light transmittance. The first results show how the nanotexturing permits to increase the sensor sensitivity even though the nanotexturing is critical to be optimised and controlled.
机译:本文介绍了在低压等离子体中进行的聚合物芯的表面处理来提高氟化氢蒸汽的塑料光纤(POF)传感器的灵敏度的可能性。这些高灵敏度Pof传感器通过除去包层并使用氧气/氩气等离子体处理来执行芯表面的等离子体构造;然后将薄的SiO 2层沉积在纳米夹层纤维芯上。 SiO 2层与在透光率方面改变纤维响应的HF蒸汽反应。第一个结果表明,即使纳米纹理化对优化和控制是至关重要的,纳多纹理的许可允许增加传感器灵敏度。

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