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Explosives Detection by array of Si μ-cantilevers coated with titanosilicate type nanoporous materials

机译:通过阵列覆盖钛硅酸盐型纳米多孔材料的Siμ悬臂进行爆炸物检测

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An array comprising 4 Si microcantilevers coated with nanoporous ETS-10 crystals sub-micrometric in size has been deployed as a multisensing platform for 2-nitrotoluene (an explosive related molecule) recognition. For such purposes, the adsorption properties of synthetic microporous ETS-10 titanosilicate type materials have been tailored by means of the Si/Ti ratio, and surface grafting with organic groups (amine, imidazol). Our general strategy for vapor detection of explosives involves the combination of Si based nanoporous solids as sensing materials and resonating Si cantilevers provided with self-heating elements as tiny microbalances (mass sensitivity factors ∼18 Hzg). Particularly for this work, ETS-10 type titanosilicates with promoted basic properties (Si/Ti=4, −NH anchored on the external surface) exhibit the higher affinity towards nitroaromatic derivatives as electron defficient molecules. A high remarkable hydrophilic character is shown by titanosilicates modified by covalent linkage with imidazole based organosilane (above 17% wt. water uptake at room temperature). Accounting from such versatile sorption behavior, the family of nanoporous ETS-10 crystals has been deployed by microdropping technique over the 8 Si-microcantilevers chip. By means of a portable low-power electronic interface capable of the simultaneous excitation and measurement of 4 sensor output signals, such multisensing platform has been successfully applied for 2-nitrotoluene detection at trace level.
机译:包含4个Si微悬臂梁的阵列已被部署为亚微米尺寸的纳米多孔ETS-10晶体的多传感平台,用于识别2-硝基甲苯(与爆炸物有关的分子)。为此目的,已经通过Si / Ti比和用有机基团(胺,咪唑)进行表面接枝来定制合成的微孔ETS-10钛硅酸盐类材料的吸附性能。我们用于爆炸物蒸气检测的一般策略涉及将硅基纳米多孔固体作为传感材料,并与具有微小细微天平(质量敏感系数〜18 Hz / ng)的自热元件一起提供共振的硅悬臂梁。特别是对于这项工作,具有增强的基本特性(Si / Ti = 4,-NH固定在外表面上)的ETS-10型钛硅酸盐显示出对硝基芳香族衍生物更高的亲和力,成为电子效率低的分子。通过与咪唑基有机硅烷的共价键改性的钛硅酸盐显示出高度显着的亲水性(室温下吸水量超过17%wt)。考虑到这种广泛的吸附行为,已经通过微滴技术将纳米多孔ETS-10晶体家族部署在8 Si-microcantilevers芯片上。借助于能够同时激励和测量4个传感器输出信号的便携式低功率电子接口,这种多传感平台已成功应用于痕量水平的2-硝基甲苯检测。

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