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The design of a nanoscale molecular barrow

机译:纳米分子鲍磊的设计

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The design of a monomolecular barrow 1.6 nm X 1.5 nm in dimension made of a central board, two rear legs and two front wheels, is discussed. This barrow is guided and driven by the tip apex of an STM which manipulates it from the rear legs. The central board has been chosen in such a way that the rotation of the front wheels can be deduced from the surface tunnelling current intensity measured during a sequence of manipulations of the barrow. Our calculations show that in UHV and without friction, the front wheels of the barrow that we designed will not rotate. This led us to design a new barrow including two ratchet molecular groups to compensate for the absence of friction.
机译:讨论了由中央板,两个后腿和两个前轮组成的尺寸为1.6 nm X 1.5 nm的单分子鲍磊的设计。该手推车由STM的顶尖引导和驱动,而STM的顶尖从后腿操纵它。中心板的选择方式可以使前轮的旋转从手推车操作过程中测得的表面隧穿电流强度中得出。我们的计算表明,在特高压且无摩擦的情况下,我们设计的手推车的前轮不会旋转。这导致我们设计了一个新的手推车,其中包括两个棘齿分子基团,以补偿不存在的摩擦。

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