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Dynamic photothermal-mechanical response of a microcantilever modified by carbon nanotube film

机译:碳纳米管薄膜修饰的微悬臂梁的动态光热力学响应

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摘要

Dynamic photothermal-mechanical response of a tri-material microcantilever illuminated by an intensity modulated laser source is theoretically analyzed using the heat dynamic differential model and finite element model based on the COMSOL 5.0. Tri-material microcantilever samples are fabricated by transferring carbon nanotube film onto a silicon microcantilever with aluminum coating. During the experiment, these samples are illuminated by an intensity-modulated laser pulse, and the maximum photothermal response frequency is similar to 173 Hz. Experimental results are consistent with theoretical analyses. The photothermal spectroscopy detection of water vapor in the open environment is carried out, and the linear correlation coefficient between spectroscopy signal and water concentration is 0.997. Experimental results demonstrated the feasibility of tri-material microcantilever as a thermal sensor for photothermal deflection spectroscopy. (C) 2016 Optical Society of America
机译:使用基于COMSOL 5.0的热动力学差分模型和有限元模型,从理论上分析了强度调制激光源照射的三材料微悬臂梁的动态光热机械响应。通过将碳纳米管薄膜转移到具有铝涂层的硅微悬臂梁上来制造三材料微悬臂梁样品。在实验过程中,这些样品被强度调制的激光脉冲照亮,最大光热响应频率类似于173 Hz。实验结果与理论分析一致。进行了开放环境中水蒸气的光热光谱检测,光谱信号与水浓度的线性相关系数为0.997。实验结果证明了三材料微悬臂梁作为光热偏转光谱热传感器的可行性。 (C)2016美国眼镜学会

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