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Functionalized TiO2 Nanorods on a Microcantilever for the Detection of Organophosphorus Chemical Agents in Air

机译:在微导体上的官能化TiO2纳米棒用于检测空气中有机磷胶化学试剂

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摘要

We report the fabrication of nanostructured microcantilevers employed as sensors for the detection of organophosphorus (OPs) vapors. These micromechanical sensors are prepared using a two-step procedure first optimized on a silicon wafer. TiO2 one-dimensional nanostructures are synthesized at a silicon surface by a solvothermal method and then grafted with bifunctional molecules having an oxime group known for its strong affinity with organophosphorus compounds. The loading of oxime molecules grafted on the different nanostructured surfaces was quantified by UV spectroscopy. It has been found that a wafer covered by vertically aligned rutile TiO2 nanorods (NRs), with an average length and width of 9.5 mu m and 14.7 nm, respectively, provides an oxime function density of 360 nmol cm(-2). The optimized TiO2 nanorod synthesis was successfully reproduced on the cantilevers, leading to a homogeneous and reproducible TiO2 NR film with the desired morphology. Thereafter, oxime molecules have been successfully grafted on the nanostructured cantilevers. Detection tests were performed in a dynamic mode by exposing the microcantilevers to dimethyl methylphosphonate (a model compound of toxic OPs agents) and following the shift of the resonant frequency. The nanostructure and the presence of the molecules on a TiO2 NR surface both improve the response of the sensors. A detection limit of 2.25 ppm can be reached with this type of sensor.
机译:我们报告用作检测有机磷(OPS)蒸汽的传感器的纳米结构微膜的制造。使用在硅晶片上首先优化的两步程序制备这些微机械传感器。通过溶剂热法在硅表面上合成TiO2一维纳率,然后用具有肟群的双官能分子接枝,其具有其具有有机磷化合物的强亲和性。通过UV光谱法量化接枝在不同的纳米结构表面上的肟分子的装载。已经发现,由垂直对准的金红石TiO2纳米棒(NRS)覆盖的晶片,平均长度和宽度分别为9.5μm和14.7nm,提供360nmolcm(-2)的肟函数密度。优化的TiO2纳米棒合成在悬臂上成功再现,导致具有所需形态的均匀和可再现的TiO2 NR膜。此后,肟分子已成功接枝在纳米结构的悬臂器上。通过将微子膜暴露于甲基膦酸二甲基膦酸酯(毒性OPS剂的模型化合物)并在谐振频率的偏移之后,以动态模式进行检测试验。纳米结构和分子在TiO 2 NR表面上的存在都改善了传感器的响应。可以通过这种类型的传感器到达2.25ppm的检测限。

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