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基于微悬臂梁的功能化 TiO2 纳米棒用于检测空气中的有机磷化学战剂。

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

机构信息

Institute of Chemistry and Processes for Energy Environment and Health (ICPEES) , UMR 7515 CNRS-University of Strasbourg , 67087 Strasbourg , France.

Department of Inorganic Chemistry and University Institute of Materials , University of Alicante , E-03080 Alicante , Spain.

出版信息

ACS Appl Mater Interfaces. 2019 Sep 25;11(38):35122-35131. doi: 10.1021/acsami.9b11504. Epub 2019 Sep 13.

Abstract

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. TiO 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 TiO nanorods (NRs), with an average length and width of 9.5 μm and 14.7 nm, respectively, provides an oxime function density of 360 nmol cm. The optimized TiO nanorod synthesis was successfully reproduced on the cantilevers, leading to a homogeneous and reproducible TiO 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 TiO NR surface both improve the response of the sensors. A detection limit of 2.25 ppm can be reached with this type of sensor.

摘要

我们报告了纳米结构微悬臂梁的制造,这些微悬臂梁被用作检测有机磷(OPs)蒸气的传感器。这些微机械传感器是通过首先在硅片上优化的两步程序制备的。TiO 一维纳米结构通过溶剂热法在硅表面合成,然后接枝上具有肟基的双官能分子,肟基因其与有机磷化合物的强亲和力而闻名。接枝在不同纳米结构表面上的肟分子的负载量通过紫外光谱进行定量。结果发现,覆盖有垂直排列的锐钛矿 TiO 纳米棒(NRs)的晶圆,平均长度和宽度分别为 9.5 μm 和 14.7 nm,提供了 360 nmol cm 的肟功能密度。在悬臂梁上成功地再现了优化的 TiO NR 合成,得到了具有所需形态的均匀且可重复的 TiO NR 薄膜。此后,肟分子成功地接枝在纳米结构的悬臂梁上。通过将微悬臂梁暴露于二甲甲基膦酸酯(有毒 OPs 试剂的模型化合物)并跟踪共振频率的变化,以动态模式进行检测测试。纳米结构和 TiO NR 表面上分子的存在都提高了传感器的响应。这种类型的传感器可以达到 2.25 ppm 的检测限。

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