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Design of Nano Screw Pump for Water Transport and its Mechanisms

机译:纳米螺旋输水泵的设计及其机理

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摘要

Nanopumps conducting fluids through nanochannels have attracted considerable interest for their potential applications in nanofiltration, water desalination and drug delivery. Here, we demonstrate by molecular dynamics (MD) simulations that a nano screw pump is designed with helical nanowires embedded in a nanochannel, which can be used to drive unidirectional water flow. Such helical nanowires have been successfully synthesized in many experiments. By investigating the water transport mechanism through nano screw pumps with different configuration parameters, three transport modes were observed: cluster-by-cluster, pseudo-continuous, and linear-continuous, in which the water flux increases linearly with the rotating speed. The influences of the nanowires’ surface energy and the screw’s diameter on water transport were also investigated. Results showed that the water flux rate increases as the decreasing wettability of helical nanowires. The deviation in water flux in screw pumps with smaller radius is attributed to the weak hydrogen bonding due to space confinement and the hydrophobic blade. Moreover, we also proposed that such screw pumps with appropriate diameter and screw pitch can be used for water desalination. The study provides an insight into the design of multifunctional nanodevices for not only water transport but water desalination in practical applications.
机译:通过纳米通道引导流体的纳米泵,由于其在纳米过滤,水脱盐和药物输送中的潜在应用而引起了极大的兴趣。在这里,我们通过分子动力学(MD)模拟证明,纳米螺旋泵的设计是将螺旋纳米线嵌入纳米通道中,该螺旋纳米线可用于驱动单向水流。在许多实验中已经成功地合成了这种螺旋纳米线。通过研究具有不同配置参数的纳米螺杆泵的输水机理,观察到了三种输运模式:逐簇,伪连续和线性连续,其中水通量随转速线性增加。还研究了纳米线的表面能和螺杆直径对水传输的影响。结果表明,水流量随着螺旋纳米线润湿性的降低而增加。半径较小的螺杆泵中水通量的偏差归因于由于空间限制和疏水叶片导致的弱氢键结合。此外,我们还建议将这种具有适当直径和螺距的螺杆泵用于海水淡化。该研究为多功能纳米装置的设计提供了见识,该装置不仅可用于水输送,而且还可用于实际应用中的水脱盐。

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