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APS -APS March Meeting 2017 - Event - Electron Conduction Mechanism And Inelastic Electron Tunneling Spectroscopy Of Porphyrin In A Nanoscale Molecular Junction

机译:APS -APS 3月会议2017 - 纳米级分子交界处的卟啉的Electon - 电子传导机制和绝体电子隧道光谱

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In order to determine the mechanism for electron conduction through a porphyrin molecular junction, temperature dependent current-voltage (I/V) studies have been performed and compared to existing models of electron transport. Porphyrin molecular junctions are being studied for their potential application as an interconnect in molecular electronics due to their low attenuation factor ($eta<$0.01 nm$^{-1}$). Based on previous studies of porphyrin molecules the mechanism of conduction is expected to be direct tunneling. Three types of porphyrins are being investigated: a free base porphyrin, and porphyrins with either a zinc or an iron atom ligated to the porphyrin ring. Molecular junctions are formed by depositing porphyrins into a 3-5 nm gap created using a zig-zag electromigration technique from a 30x50 nm gold nanowire. I/V, dI/dV, and d$^2$I/dV$^2$ are measured simultaneously at temperatures from 4.2 to 300 K. d$^2$I/dV$^2$ is the inelastic electron tunneling spectrum (IETS) of the molecular junction, which is used to verify the presence of a molecule in the gap. Peaks in the spectra indicate the excitation of a vibrational mode which are compared to Fourier transform infrared spectroscopy and theoretical density functional theory calculations.
机译:为了确定通过卟啉分子结的电子传导机制,已经进行了温度依赖电流 - 电压(I / V)研究,并与现有的电子传输模型进行了比较。由于它们的低衰减因子($ eta <$ 0.01 nm $ ^ {-1} $),正在研究其潜在应用作为分子电子器件的势应用作为分子电子的互连。基于先前对卟啉分子的研究,预计传导机理将是直接的隧道。正在研究三种类型的卟啉:具有锌或铁原子的游离碱卟啉和卟啉连接到卟啉环。通过将卟啉沉积到使用来自30x50nm金纳米线的Zig-ZAG电迁移技术产生的3-5nm间隙中,形成分子结。 I / V,DI / DV和D $ ^ 2 $ I / DV $ ^ 2 $在4.2至300 K的温度下同时测量。D $ ^ 2 $ I / DV $ ^ 2 $是无弹性电子隧道谱(IET)的分子结,用于验证间隙中的分子的存在。光谱中的峰表示振动模式的激发,其与傅里叶变换红外光谱和理论密度泛函理论计算进行比较。

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