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Design of chemically propelled nanodimer motors

机译:化学推进的纳米二聚体电动机的设计

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The self-propelled motion of nanodimers fueled by a chemical reaction taking place under nonequilibrium steady state conditions is investigated. The nanodimer consists of a pair of catalytic and chemically inactive spheres, in general with different sizes, with a fixed internuclear separation. The solvent in which the dimer moves is treated at a particle-based mesoscopic level using multiparticle collision dynamics. The directed motion of the dimer can be controlled by adjusting the interaction potentials between the solvent molecules and the dimer spheres, the internuclear separation, and sphere sizes. Dimers can be designed so that the directed motion along the internuclear axis occurs in either direction and is much larger than the thermal velocity fluctuations, a condition needed for such nanodimers to perform tasks involving targeted dynamics. (C) 2008 American Institute of Physics.
机译:研究了在非平衡稳态条件下发生的化学反应推动的纳米二聚体的自推进运动。纳米二聚体由一对催化的和化学惰性的球组成,通常具有不同的大小,并具有固定的核间分离。使用多粒子碰撞动力学以粒子为基础的介观水平处理二聚体移动的溶剂。二聚体的定向运动可以通过调节溶剂分子与二聚体球之间的相互作用势,核间分离和球尺寸来控制。可以设计二聚体,以使沿着核间轴的定向运动在任一方向上发生,并且比热速度波动大得多,这是此类纳米二聚体执行涉及目标动力学的任务所需的条件。 (C)2008美国物理研究所。

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