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Probing molecules in integrated silicon-molecule-metal junctions by inelastic tunneling spectroscopy

机译:用非弹性隧穿光谱探测硅-分子-金属结合处的分子

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Molecular electronics has drawn significant attention for. nanoelectronic and sensing applications. A hybrid technology where molecular devices are integrated with traditional semiconductor microelectronics is a particularly promising approach for these applications. Key challenges in this area include developing devices in which the molecular integrity is preserved, developing in situ characterization techniques to probe the molecules within the completed devices, and determining the physical processes that influence carrier transport. In this study, we present the first experimental report of inelastic electron tunneling spectroscopy of integrated metal-molecule-si I icon devices with molecules assembled directly to silicon contacts. The results provide direct experimental confirmation that the chemical integrity of the monolayer is preserved and that the molecules play a direct role in electronic conduction through the devices. Spectra obtained under varying measurement conditions show differences related to the silicon electrode, which can provide valuable information about the physics influencing carrier transport in these molecule/Si hybrid devices.
机译:分子电子学引起了极大的关注。纳米电子和传感应用。对于这些应用而言,将分子器件与传统半导体微电子集成在一起的混合技术是一种特别有前途的方法。该领域的主要挑战包括开发保留分子完整性的设备,开发原位表征技术以探测完整设备中的分子以及确定影响载流子传输的物理过程。在这项研究中,我们提出了将金属分子si I图标器件直接组装到硅触点上的非弹性电子隧穿光谱的第一份实验报告。结果提供了直接的实验确认,证明了单分子层的化学完整性得以保留,并且分子在通过器件的电子传导中起着直接作用。在变化的测量条件下获得的光谱显示出与硅电极有关的差异,这可以提供有关影响这些分子/ Si混合器件中的载流子传输的物理学的有价值的信息。

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