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Optimizing the motion of a folding molecular motor in soft matter

机译:优化柔软物质折叠分子电机的运动

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We use molecular dynamics simulations to investigate the displacement of a periodically folding molecular motor in a viscous environment. Our aim is to find significant parameters to optimize the displacement of the motor. We find that the choice of a massy host or of small host molecules significantly increase the motor displacements. While in the same environment, the motor moves with hopping solid-like motions while the host moves with diffusive liquid-like motions, a result that originates from the motor's larger size. Due to hopping motions, there are thresholds on the force necessary for the motor to reach stable positions in the medium. These force thresholds result in a threshold in the size of the motor to induce a significant displacement, that is followed by plateaus in the motor displacement.
机译:我们使用分子动力学模拟来研究粘性环境中周期性折叠分子电机的位移。 我们的目的是找到重要的参数来优化电机的位移。 我们发现SAMEY主机或小型宿主分子的选择显着增加了电机位移。 虽然在相同的环境中,电动机在跳跃固体运动中移动,而主体随着衍射液体样运动而移动,结果源自电机的较大尺寸。 由于跳跃运动,电动机在介质中达到稳定位置所需的力的阈值。 这些力阈值导致电动机尺寸的阈值以诱导显着的位移,其后是电动机位移中的平台。

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