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Micromachined Quartz Resonator Functionalized with Single Walled Carbon Nanotubes

机译:用单壁碳纳米管官能化的微机械型石英谐振器

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Single walled carbon nanotubes (SWNTs) are reservoirs of gases as they can adsorb on their walls as well as retain gas molecules in their hollow cylindrical interior. This has important applications for example in fuel cell technology for hydrogen storage, as a gas sensor for realization of artificial nose, etc. Storage of gases by carbon nanotubes have been recently investigated by monitoring changes in their thermoelectric power and electrical resistivity due to their interaction with gas molecules. In this paper we present a gravimetric study of interaction of gas molecules with isolated SWNTs using a micromachined ultrasensitive quartz crystal microbalance (QCM). The adsorption and desorption of gas molecules with different molecular weights from carbon nanotubes revealed that changes in resonance frequency and quality factor of the resonating crystal scale as approximately M~(0.45), where M is the mass the of the gas molecule as compared to M~(1/3) dependence observed in case of changes in thermoelectric power and electrical resistance for thin films of the carbon nanotubes. The use of QCM enables room temperature probing of gas interaction with isolated single walled carbon nanotubes. Specific interaction of gases with carbon nanotubes on QCM provides potential application of the device as a gas sensor.
机译:单壁碳纳米管(SWNT)是气体的储层,因为它们可以吸附在它们的墙壁上,以及在其空心圆柱内部保持气体分子。这具有例如在储氢中的燃料电池技术中的重要应用,作为用于实现人造鼻的气体传感器等,最近通过监测其由于它们的相互作用而监测其热电动力和电阻率的变化来研究通过碳纳米管的气体存储用气体分子。在本文中,我们使用微机械超细晶晶微观(QCM)来介绍气体分子与分离的SWNT相互作用的重量研究。来自碳纳米管的不同分子量的气体分子的吸附和解吸显示,谐振晶鳞的共振频率和质量因子的变化为大约m〜(0.45),其中m是与m相比的气体分子的质量在碳纳米管的薄膜的热电动力和电阻变化的情况下观察到〜(1/3)依赖性。 QCM的使用使得室温探测气体相互作用与隔离的单壁碳纳米管。在QCM上具有碳纳米管的气体的具体相互作用使器件作为气体传感器的潜在应用。

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