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Optical fiber sensors based on nanostructured coatings fabricated by means of the Layer-by-Layer Electrostatic Self-Assembly method

机译:基于纳米结构涂层的光纤传感器,通过层层静电自组装方法制造

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The Layer-by-Layer Electrostatic Self-Assembly (ESA) method has been successfully used for the design and fabrication of nanostructured materials. More specifically, this technique has been applied for the deposition of thin films on optical fibers with the purpose of fabricating different types of optical fiber sensors. In fact, optical fiber sensors for measuring humidity, temperature, pH, hydrogen peroxide, glucose, volatile organic compounds or even gluten have been already experimentally demonstrated. The versatility of this technique allows the deposition of these sensing coatings on flat substrates and complex geometries as well. For instance, nanoFabry-Perots and microgratings have been formed on cleaved ends of optical fibers (flat surfaces) and also sensing coatings have been built onto long period gratings (cylindrical shape), tapered fiber ends (conical shape), biconically tapered fibers or even the internal side of hollow core fibers. Among the different materials used for the construction of these sensing nanostructured coatings, diverse types such as polymers, inorganic semiconductors, colorimetric indicators, fluorescent dyes, quantum dots or even biological elements as enzymes can be found. This technique opens the door to the fabrication of new types of optical fiber sensors.
机译:逐层静电自组装(ESA)方法已成功用于纳米结构材料的设计和制造。更具体地,该技术已被应用于在光纤上沉积薄膜,以制造不同类型的光纤传感器。实际上,已经通过实验证明了用于测量湿度,温度,pH,过氧化氢,葡萄糖,挥发性有机化合物甚至面筋的光纤传感器。该技术的多功能性允许将这些传感涂层沉积在平坦的基板上以及复杂的几何形状上。例如,nanoFabry-Perots和微光栅已在光纤的开裂端(平坦表面)上形成,并且传感涂层已构建在长周期光栅(圆柱形),锥形光纤端(圆锥形),双圆锥形光纤甚至什至上中空纤维的内侧。在用于构造这些感测纳米结构涂层的不同材料中,可以找到多种类型,例如聚合物,无机半导体,比色指示剂,荧光染料,量子点或什至是酶的生物元素。该技术为新型光纤传感器的制造打开了大门。

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