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Surface Acoustic Wave Based Nitrogen Dioxide Gas Sensors Using Colloidal Quantum Dot Sensitive Films

机译:使用胶体量子点敏感膜的基于表面声波的二氧化氮气体传感器

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In this work, we propose a surface acoustic wave (SAW)based NO2 gas sensor with a colloidal quantum dot (CQD)sensitive film. The PbS CQDs was synthesized through a cation-exchange method, which was then spun onto the surface of a designed SAW delay line with a central frequency of 200MHz. To improve the sensitivity, the CQD films were carried out a ligand exchange treatment. The experimental results show the sensitivity has been enhanced more than three times in the aid of the ligand exchange treatment. The fabricated sensor showed good repeatability, low detect limit down to l05ppb and a sensitivity of 0.91kHz/ppm.
机译:在这项工作中,我们提出了一种基于表面声波(SAW)的NO 2 带有胶体量子点(CQD)敏感膜的气体传感器。通过阳离子交换法合成了PbS CQD,然后将其纺到中心频率为200MHz的设计SAW延迟线的表面上。为了提高灵敏度,对CQD膜进行了配体交换处理。实验结果表明,借助配体交换处理,灵敏度提高了三倍以上。制成的传感器显示出良好的可重复性,低至10ppb的低检测限和0.91kHz / ppm的灵敏度。

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