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首页> 外文期刊>Journal of Micromechanics and Microengineering >Self-assembly and sensing-group graft of pre-modified CNTs on resonant micro-cantilevers for specific detection of volatile organic compound vapors
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Self-assembly and sensing-group graft of pre-modified CNTs on resonant micro-cantilevers for specific detection of volatile organic compound vapors

机译:在共振微悬臂梁上预修饰的CNTs的自组装和传感基团接枝,用于特异性检测挥发性有机化合物蒸气

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This paper reports MWCNT (multi-wall carbon nano-tube)-modified resonant micro-cantilever chemical sensors for detection of trinitrotoluene (TNT) vapor. The MWCNTs are pre-modified and then area-selectively self-assembled at the free-end gold pad of a micro-cantilever, in which a resonance-exciting heater and a signal-readout piezoresistive Wheatstone bridge are integrated. Featuring a high specific surface area, the MWCNTs are further functionalized with TNT-sensitive groups by grafting onto the sidewalls of the MWCNTs, To lower the non-specific absorption of water and other small organic molecules, the SiO_2 surface of the micro-cantilever was also pre-treated for hydrophobicity and oleophobicity by self-assembling a monolayer of heptadecafluorodecyltrimethoxysilane. The results of our sensing experiments have shown a capability to rapidly detect ppb-level TNT vapor, and a high specificity of the functionalized groups to TNT molecules. The experiment has also confirmed a good long-term stability in detecting sensitivity.
机译:本文报道了用于检测三硝基甲苯(TNT)蒸气的MWCNT(多壁碳纳米管)修饰的共振微悬臂化学传感器。预先对MWCNT进行了修饰,然后在微悬臂的自由端金焊盘上进行了区域选择性的自组装,在该悬臂中集成了一个激发共振的加热器和一个信号读出压阻惠斯通电桥。 MWCNT具有高的比表面积,通过接枝到MWCNT的侧壁上进一步被TNT敏感基团官能化。为了降低水和其他小有机分子的非特异性吸收,微悬臂梁的SiO_2表面为还通过自组装七氟十六烷基三甲氧基硅烷单层对疏水性和疏油性进行了预处理。我们的传感实验结果显示了能够快速检测ppb级TNT蒸气的功能,以及官能团对TNT分子的高度特异性。实验还证实了检测灵敏度方面的良好长期稳定性。

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