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An electrically actuated molecular toggle switch

机译:电动分子拨动开关

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Molecular electronics is considered a promising approach for future nanoelectronic devices. In order that molecular junctions can be used as electrical switches or even memory devices, they need to be actuated between two distinct conductance states in a controlled and reproducible manner by external stimuli. Here we present a tripodal platform with a cantilever arm and a nitrile group at its end that is lifted from the surface. The formation of a coordinative bond between the nitrile nitrogen and the gold tip of a scanning tunnelling microscope can be controlled by both electrical and mechanical means, and leads to a hysteretic switching of the conductance of the junction by more than two orders of magnitude. This toggle switch can be actuated with high reproducibility so that the forces involved in the mechanical deformation of the molecular cantilever can be determined precisely with scanning tunnelling microscopy.
机译:分子电子学被认为是未来纳米电子设备的一种有前途的方法。为了能够将分子结用作电开关或什至是存储装置,需要通过外部刺激以可控制和可复制的方式在两个不同的电导状态之间激活分子结。在这里,我们介绍了一个三脚架平台,该平台具有一个悬臂和一个从表面举起的腈基。扫描隧道显微镜的腈氮和金尖端之间的配位键的形成可以通过电气和机械手段来控制,并导致结的电导率滞后地切换两个以上的数量级。可以高重复性地操作该拨动开关,以便可以通过扫描隧道显微镜精确确定分子悬臂的机械变形所涉及的力。

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