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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Select gas absorption in carbon nanotubes loading a resonant cavity to sense airborne toxin gases
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Select gas absorption in carbon nanotubes loading a resonant cavity to sense airborne toxin gases

机译:选择碳纳米管中的气体吸收来加载共振腔以检测空气中的毒素气体

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摘要

A gas-sensing probe has been investigated that involves the use of microwave resonant circuitry to detect frequency shifts/Q-changes in a resonant microwave cavity caused by absorption of chemical/biological agents onto carbon nanotubes (CNTs). Tests were made with single walled (SWNTs) to determine maximum selectivity of the probe. The ultimate goal is to accumulate a battery of test data for selected gases to establish a comprehensive inventory of potential gases that can be sensed with the apparatus. Additionally, it is anticipated that this work will result in a significant simplification of the design of the probe as well as the determination of an optimum frequency for probing with the cavity. Data presented in this work is offered as a demonstration of the feasibility of the instrument to detect non-toxic gases. As development continues, the device should be able to detect a wider range of gases including airborne toxins. Particle induced X-ray emission (PIXE) was used to characterize the impurities within the SWNTS to better understand the nature of the coupling of the microwave with the nanostructured material and ultimately to determine how impurities affect the sensitivity of the probe.
机译:已经研究了一种气体传感探头,该探头涉及使用微波谐振电路来检测谐振微波腔中由于化学/生物剂吸收到碳纳米管(CNT)上而引起的频移/ Q变化。用单壁(SWNT)进行测试,以确定探针的最大选择性。最终目标是为选定的气体累积一组测试数据,以建立可通过设备检测到的潜在气体的全面清单。另外,可以预料,这项工作将大大简化探针的设计,并确定用于探测腔的最佳频率。这项工作中提供的数据证明了该仪器检测无毒气体的可行性。随着开发的继续,该设备应该能够检测更多的气体,包括空气中的毒素。粒子诱导X射线发射(PIXE)用于表征SWNTS中的杂质,以更好地了解微波与纳米结构材料的耦合性质,并最终确定杂质如何影响探针的灵敏度。

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