首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Surface area enhancement by mesoporous silica deposition on microcantilever sensors for small molecule detection
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Surface area enhancement by mesoporous silica deposition on microcantilever sensors for small molecule detection

机译:微悬臂梁传感器上介孔二氧化硅沉积可提高表面积,用于小分子检测

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摘要

We demonstrate here an easy and controlled technique to enhance the surface active area via highly porous inorganic nanostructure growth on the surface of a microcantilever. A dip-coating approach was used to deposit a continuous mesoporous silica thin film with an accessible pore size of around 8 nm. Both dynamic and static characterizations were performed showing a sensitivity enhancement to relative humidity up to two orders of magnitude with respect to bare cantilevers. The combination of the two analyses gave the possibility to link the adsorption kinetics to the direct quantification of the adsorbed layer mass. These results obtained with water molecules as test analyte pave the way to the use of these composite systems as improved mass and chemical detectors of other small target molecules.
机译:我们在这里展示了一种易于控制的技术,可通过在微悬臂梁表面上高度多孔的无机纳米结构生长来增强表面活性区域。使用浸涂法来沉积具有约8nm的可接近孔径的连续中孔二氧化硅薄膜。进行动态和静态表征均显示相对于裸露悬臂的相对湿度的灵敏度提高了两个数量级。两种分析的结合使将吸附动力学与吸附层质量的直接定量联系起来成为可能。以水分子作为测试分析物获得的这些结果为将这些复合系统用作其他小目标分子的质量检测器和化学检测器铺平了道路。

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