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Sol-gel derived porous silica as a constituent material for designing optical fiber chemical sensors

机译:溶胶 - 凝胶衍生的多孔二氧化硅作为用于设计光纤化学传感器的组成材料

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Sol-gel processes were developed to prepare nano porous silica materials. The obtained porous sol-gel silica (PSGS) materials have been used as constituent materials in designing optical fiber chemical sensors. A PSGS membrane coated on the surface of an optical fiber was used as a transducer for sensing humidity level in air. A PSGS membrane doped with an ammonia indicator dye has been coated on an optical fiber to sense ammonia in air. Both of the coating based sensors are reversible and fast response. In the tested range, relative humidity (RH) in air down to 3% can be detected with the PSGS coated fiber optic sensor. The fiber optic ammonia sensor with ammonia indicator doped PSGS coating can be used to sense ammonia in air down to sub-ppm level. PSGS has also been used as a constituent material in preparing porous silica optical fibers. The obtained porous optical fibers have been used to design optical fiber chemical sensors for sensing humidity, ammonia and volatile organic compounds. A CuCl_2 doped PSGS fiber has been tested for sensing ammonia in a high temperature gas sample. Ammonia in the high temperature air gas diffuses into the PSGS fiber, reversibly reacts with CuCl_2 doped in the PSGS fiber to form a complex. The formed complex was detected with fiber optic spectrometric method. This sensor can detect ammonia in a high temperature (450°C) air gas stream down 0.3 ppm. Techniques of preparing PSGS, coating PSGS on an optical fiber, making a porous optical fiber with PSGS as a constituent material will be presented. Examples of optical fiber sensors using PSGS coatings and a PSGS fiber as transducers for gas sensing are presented.
机译:开发溶胶 - 凝胶方法以制备纳米多孔二氧化硅材料。所获得的多孔溶胶 - 凝胶二氧化硅(PSG)材料已被用作设计光纤化学传感器的组成材料。涂覆在光纤表面上的PSGS膜用作传感器,用于传感空气中的湿度水平。掺杂有氨指示剂染料的PSGS膜已经涂覆在光纤上以感测空气中的氨。两种基于涂层的传感器是可逆的,响应的响应。在测试的范围内,通过PSG被涂覆的光纤传感器可以检测到3%的空气中的相对湿度(RH)。具有氨指示剂的光纤氨传感器掺杂PSGS涂层可用于在空气中感测氨水水平。 PSG也已被用作制备多孔二氧化硅光纤中的组成材料。所获得的多孔光纤已经用于设计用于感测湿度,氨和挥发性有机化合物的光纤化学传感器。已经测试了CuCl_2掺杂PSGS纤维,用于在高温气体样品中感测氨。高温气体中的氨扩散到PSGS纤维中,可逆地与掺杂在PSGS纤维中的CuCl_2反应形成复合物。用光纤光谱法检测形成的复合物。该传感器可以在高温(450°C)空气气流下检测氨0.3ppm。呈现在光纤上涂覆PSG的PSG的技术,将呈现与PSG作为构成材料的多孔光纤。呈现使用PSGS涂层的光纤传感器和PSGS纤维作为用于气体传感的换能器的光纤传感器的实例。

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