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以TiO-NTs对微悬臂梁传感器进行双面纳米结构化处理作为提高其灵敏度的途径。

Double side nanostructuring of microcantilever sensors with TiO-NTs as a route to enhance their sensitivity.

作者信息

Thomas Guillaume, Gerer Geoffrey, Schlur Laurent, Schnell Fabien, Cottineau Thomas, Keller Valérie, Spitzer Denis

机构信息

Nanomatériaux pour les Systèmes Sous Sollicitations Extrêmes (NS3E), UMR 3208 ISL/CNRS/UNISTRA, French-German Research Institute of Saint-Louis, 5, rue du Général Cassagnou, 68300 Saint-Louis, France.

出版信息

Nanoscale. 2020 Jul 2;12(25):13338-13345. doi: 10.1039/d0nr01596b.

Abstract

We reported a new strategy to enhance the sensing performances of a commercial microcantilever with optical readout in dynamic mode for the vapor detection of organophosphorus compounds (OPs). In order to increase significantly the surface area accessible to the molecules in the vapor phase, we nanostructured both sides of the microcantilever with ordered, open and vertically oriented amorphous titanium dioxide nanotubes (TiO2-NTs) in one step by an anodization method. However, due to the aggressive conditions of anodization synthesis it remains a real challenge to nanostructure both sides of the microcantilever. Consequently, we developed and optimized a protocol of synthesis to overcome these harsh conditions which can lead to the total destruction of the silicon microcantilever. Moreover, this protocol was also elaborated in order to maintain a good reflection of the laser beam on one side of the microcantilever towards the position sensitive photodiode and limit the light diffusion by the NTs film. The results related to the detection of dimethyl methylphosphonate (DMMP) showed that TiO2 and the nanostructuring on both sides of the microcantilever with NTs indeed improved the response of the sensor to vapors compared to a microcantilever nanostructured on only one side. The dimensions and morphology of NTs guaranteed the access of molecules to the surface of NTs. This approach showed promising prospects to enhance the sensing performances of microcantilevers.

摘要

我们报道了一种新策略,用于增强具有光学读出功能的商用微悬臂梁在动态模式下对有机磷化合物(OPs)蒸汽检测的传感性能。为了显著增加气相中分子可接触的表面积,我们通过阳极氧化法一步在微悬臂梁的两侧制备了有序、开放且垂直取向的非晶态二氧化钛纳米管(TiO2-NTs)纳米结构。然而,由于阳极氧化合成的苛刻条件,在微悬臂梁两侧制备纳米结构仍然是一个实际挑战。因此,我们开发并优化了一种合成方案,以克服这些可能导致硅微悬臂梁完全损坏的苛刻条件。此外,还制定了该方案,以保持微悬臂梁一侧的激光束向位置敏感光电二极管的良好反射,并限制纳米管薄膜的光扩散。与检测甲基膦酸二甲酯(DMMP)相关的结果表明,与仅一侧制备纳米结构的微悬臂梁相比,TiO2以及微悬臂梁两侧的纳米结构确实提高了传感器对蒸汽的响应。纳米管的尺寸和形态保证了分子能够接触到纳米管表面。这种方法在增强微悬臂梁传感性能方面显示出有前景的前景。

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