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Passive Nanotechnology Based Sensors for the Remote Detection of Environmental Pollutants Impacting Public Health

机译:基于无源纳米技术的传感器,用于远程检测对公共卫生影响的环境污染物

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Carbon nanotube sensors offer sensitivity and compactness, and provide a versatile chemical platform for ambient monitoring of environmental pollutants such as ozone, ammonia and volatile organic compounds, known to cause acute respiratory health problems (e.g., exacerbations of asthma and COPD). The advances in electronics and the feasibility to interface complex sensor materials with low-resistance metallic contacts enable novel sensor configurations, such as passive nodes scattered on ground and remotely monitored by drones or radar. Under an NIH Grant, we are developing sensor arrays to detect ambient environmental triggers of respiratory diseases in the personal microenvironment. Our approach makes use of the unique electronic properties of single-walled nanotubes (SWNTs) and the tremendous potential to modulate their sensitivity and selectivity using tailored chemical functionalization to adsorb specific molecules. In this paper, we present the first results to demonstrate the feasibility of a completely passive SWNT-based ammonia sensor remotely interrogated by an instrumented monostatic radar. It is shown that the backscattered signal produces a unique resonant response that can be used as a marker for the gas detection.
机译:碳纳米管传感器提供敏感性和紧凑性,并为臭氧,氨和挥发性有机化合物等环保污染物的环境监测提供多功能的化学平台,已知引起急性呼吸健康问题(例如,哮喘和COPD的恶化)。电子设备的进步和界面具有低电阻金属触点的复杂传感器材料的可行性使得新颖的传感器配置,例如散落在地上的被动节点并被无人机或雷达远程监测。在NIH Grant,我们正在开发传感器阵列,以检测个人微环境中呼吸系统疾病的环境触发器。我们的方法利用单壁纳米管(SWNT)的独特电子特性以及使用量身定制的化学官能化来调节其灵敏度和选择性的巨大电位,以吸附特定分子。在本文中,我们提出了第一种结果,以证明通过仪表式单雷达逐步询问的完全被动SWNT的氨传感器的可行性。结果表明,反向散射信号产生独特的谐振响应,其可以用作气体检测的标记。

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