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Nanocomposite thin films for optical temperature sensing

机译:用于光学温度传感的纳米复合薄膜

摘要

The disclosure relates to an optical method for temperature sensing utilizing a temperature sensing material. In an embodiment the gas stream, liquid, or solid has a temperature greater than about 500° C. The temperature sensing material is comprised of metallic nanoparticles dispersed in a dielectric matrix. The metallic nanoparticles have an electronic conductivity greater than approximately 10−1 S/cm at the temperature of the temperature sensing material. The dielectric matrix has an electronic conductivity at least two orders of magnitude less than the dispersed metallic nanoparticles at the temperature of the temperature sensing material. In some embodiments, the chemical composition of a gas stream or liquid is simultaneously monitored by optical signal shifts through multiple or broadband wavelength interrogation approaches. In some embodiments, the dielectric matrix provides additional functionality due to a temperature dependent band-edge, an optimized chemical sensing response, or an optimized refractive index of the temperature sensing material for integration with optical waveguides.
机译:本公开涉及一种利用温度感测材料进行温度感测的光学方法。在一个实施方案中,气流,液体或固体的温度大于约500℃。温度感测材料由分散在介电基质中的金属纳米颗粒组成。金属纳米颗粒在温度感测材料的温度下具有大于约10 -1 S / cm的电子电导率。在温度感测材料的温度下,电介质基体的电子导电率比分散的金属纳米颗粒小至少两个数量级。在一些实施例中,通过多种或宽带波长询问方法通过光信号移位来同时监测气流或液体的化学组成。在一些实施例中,由于与光波导集成的温度感测材料的温度相关带边缘,优化的化学感测响应或优化的折射率,介电基质提供了附加的功能。

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