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Three-terminal single-molecule junctions formed by mechanically controllable break junctions with side gating

机译:由带有侧门的机械可控断裂结形成的三端单分子结

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Molecules are promising candidates for electronic device components because of their small size, chemical tunability, and ability to self-assemble. A major challenge when building molecule-based electronic devices is forming reliable molecular junctions and controlling the electrical current through the junctions. Here, we report a three-terminal junction that combines both the ability to form a stable single-molecule junction via the mechanically controllable break junction (MCBJ) technique and the ability to shift the energy levels of the molecule by gating. Using a noncontact side-gate electrode located a few nanometers away from the molecular junction, the conductance of the molecule could be dramatically modulated because the electrical field applied to the molecular junction from the side gate changed the molecular electronic structure, as confirmed by the ab initio calculations. Our study will provide a new design for mechanically stable single-molecule transistor junctions fabricated by the MCBJ method.
机译:分子因其体积小,化学可调性和自组装能力而成为电子设备部件的有希望的候选者。构建基于分子的电子设备时的主要挑战是形成可靠的分子结并控制通过结的电流。在这里,我们报告了一个三端结,该结结合了通过机械可控的断裂结(MCBJ)技术形成稳定的单分子结的能力和通过门控转移分子能级的能力。使用离分子结几纳米的非接触式侧栅电极,可以显着地调节分子的电导,因为从侧栅施加到分子结的电场改变了分子的电子结构,如ab所证实的那样。从头算。我们的研究将为通过MCBJ方法制造的机械稳定的单分子晶体管结提供一种新的设计。

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