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CNT based thermal Brownian motor to pump water in nanodevices

机译:基于CNT的热布朗电机在纳米器件中泵送水

摘要

Brownian molecular motors are nanoscale machines that exploit thermal fluctuations for directional motion by employing mechanisms such as the Feynman-Smoluchowski ratchet. In this study, using Non Equilibrium Molecular Dynamics, we propose a novel thermal Brownian motor for pumping water through Carbon Nanotubes (CNTs). To achieve this we impose a thermal gradient along the axis of a CNT filled with water and impose, in addition, a spatial asymmetry by flxing specific zones on the CNT in order to modify the vibrational modes of the CNT. We find that the temperature gradient and imposed spatial asymmetry drive the water ow in a preferential direction. We systematically modified the magnitude of the applied thermal gradient and the axial position of the fixed points. The analysis involves measurement of the vibrational modes in the CNTs using a Fast Fourier Transform (FFT) algorithm. We observed water ow in CNTs of 0.94, 1.4 and 2.0 nm in diameter, reaching a maximum velocity of 5 m/s for a thermal gradient of 3.3 K/nm. The proposed thermal motor is capable of delivering a continuous ow throughout a CNT, providing a useful tool for driving liquids in nanouidic devices by exploiting thermal gradients.
机译:布朗分子电动机是纳米尺度的机器,它利用诸如Feynman-Smoluchowski棘轮之类的机制来利用热波动来进行定向运动。在这项研究中,我们使用非平衡分子动力学,提出了一种新型的热布朗电机,用于通过碳纳米管(CNT)抽水。为了实现这一点,我们沿着充满水的CNT轴施加一个热梯度,此外,通过在CNT上嵌入特定区域来施加空间不对称性,以修改CNT的振动模式。我们发现温度梯度和强加的空间不对称性将水流向优先方向驱动。我们系统地修改了施加的热梯度的大小和固定点的轴向位置。该分析涉及使用快速傅立叶变换(FFT)算法测量CNT中的振动模式。我们观察到直径为0.94、1.4和2.0 nm的CNT中的水流,对于3.3 K / nm的热梯度,达到5 m / s的最大速度。所提出的热马达能够在整个CNT上输送连续流,从而为利用纳米梯度驱动纳米流体器件中的液体提供了有用的工具。

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