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The effect of metal cluster coatings on carbon nanotubes

机译:金属团簇涂层对碳纳米管的影响

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The electrical transport and chemical sensing properties of single-walled carbon nanotube field effect transistors (SWNT-FETs) coated with metal clusters have been investigated. The source-drain current passing through an SWNT-FET coated with Pd nanoparticles showed no change over a range of gate voltages. Nevertheless, the magnitude of the current was still sensitive towards NO_2, NH_3 and H_2 exposure. The Pd nanoparticles coating on the nanotube generated hole earners, which either became diluted upon NH_3 or H_2 adsorption, or enhanced upon NO_2 adsorption. Unlike the ohmic behaviour demonstrated by SWNT-FETs coated with Pd nanoparticles, the transfer characteristics of SWNT-FETs coated with Al nanoparticles revealed Schottky barrier formations at the metal-nanotube contacts. Here, the conductance through the nanotube decreased, while the device sensitivity towards NO_2 and NH_3 gases improved greatly. We suggest that coating SWNT-FETs with metal nanoparticles could be exploited for the development of highly sensitive nanotube-based molecular sensors.
机译:研究了涂覆有金属团簇的单壁碳纳米管场效应晶体管(SWNT-FET)的电传输和化学传感特性。通过涂有Pd纳米颗粒的SWNT-FET的源极-漏极电流在整个栅极电压范围内均未显示变化。尽管如此,电流的大小仍然对NO_2,NH_3和H_2暴露敏感。纳米管上的Pd纳米颗粒涂层产生空穴载体,该空穴载体在NH_3或H_2吸附后被稀释,或在NO_2吸附后被增强。与涂有Pd纳米颗粒的SWNT-FET表现出的欧姆行为不同,涂有Al纳米颗粒的SWNT-FET的转移特性揭示了在金属纳米管接触处的肖特基势垒形成。在此,通过纳米管的电导率降低,而器件对NO_2和NH_3气体的灵敏度大大提高。我们建议用金属纳米颗粒涂覆SWNT-FET可以用于开发高度敏感的基于纳米管的分子传感器。

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