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Supramolecular Rotor and Translator at Work: On-Surface Movement of Single Atoms

机译:超分子转子和平移器的工作:单原子的表面运动

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A supramolecular nanostructure composed of four 4-acetylbiphenyl molecules and self-assembled on Au (111) was loaded with single Au adatoms and studied by scanning tunneling microscopy at low temperature. By applying voltage pulses to the supramolecular structure, the loaded Au atoms can be rotated and translated in a controlled manner. The manipulation of the gold adatoms is driven neither by mechanical interaction nor by direct electronic excitation. At the electronic resonance and driven by the tunneling current intensity, the supramolecular nanostructure performs a small amount of work of about 8 x 10(-21) J, while transporting the single Au atom from one adsorption site to the next. Using the measured average excitation time necessary to induce the movement, we determine the mechanical motive power of the device, yielding about 3 x 10(-21) W.
机译:由四个4-乙酰基联苯分子组成并自组装在Au(111)上的超分子纳米结构装载了单个Au原子,并在低温下通过扫描隧道显微镜研究。通过向超分子结构施加电压脉冲,可以以受控方式旋转和平移负载的Au原子。金吸附原子的操纵既不是通过机械相互作用也不是通过直接电子激发来驱动。在电子共振作用下,在隧穿电流强度的驱动下,超分子纳米结构执行约8 x 10(-21)J的少量功,同时将单个Au原子从一个吸附位点迁移到另一个吸附位点。使用诱导运动所需的平均激励时间,我们确定了设备的机械动力,产生了约3 x 10(-21)W。

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