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由散粒噪声驱动的分子转子的单向旋转。

One-way rotation of a molecule-rotor driven by a shot noise.

作者信息

Echeverria Jorge, Monturet Serge, Joachim Christian

机构信息

Nanosciences Group & MANA Satellite, CEMES/CNRS, 29 rue Jeanne Marvig, 31055 Toulouse, France.

出版信息

Nanoscale. 2014 Mar 7;6(5):2793-9. doi: 10.1039/c3nr05814j. Epub 2014 Jan 27.

Abstract

The shot noise of a tunneling current passing through a molecule-motor can sustain a one-way rotation when populating the molecular excited states by tunneling inelastic excitations. We demonstrate that a ratchet-like ground state rotation potential energy curve is not necessary for the rotation to occur. A relative shift in energy difference between the maxima of this ground state and the minima of the excited states is the necessary condition to get to a unidirectional rotation. The rotor speed of rotation and its rotation direction are both controlled by this shift, indicating the necessity of a careful design of both the ground and excited states of the next generation of molecule-motors to be able to generate a motive power at the nanoscale.

摘要

当通过隧穿非弹性激发来填充分子激发态时,流经分子马达的隧穿电流的散粒噪声能够维持单向旋转。我们证明,旋转的发生并不一定需要类似棘轮的基态旋转势能曲线。基态最大值与激发态最小值之间能量差的相对偏移是实现单向旋转的必要条件。旋转的转子速度及其旋转方向均由该偏移控制,这表明有必要精心设计下一代分子马达的基态和激发态,以便能够在纳米尺度上产生动力。

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