Rajegowda Rakesh, Anandakrishnan Abhijith, Sathian Sarith P
Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai 600036, India.
Phys Chem Chem Phys. 2020 Mar 18;22(11):6081-6085. doi: 10.1039/d0cp00048e.
The controlled transport of water through nanoscale devices is an important requirement in the design and development of various nanofluidic systems. Molecular dynamics simulations are performed to investigate the phonon coupling induced thermophoretic transport of water through a carbon nanotube (CNT). Phonon coupling is believed to have a significant role in the transport of heat at the liquid-solid interface. The thermally induced vibrational modes of water-filled and empty CNTs are examined at various thermal gradients. The spatial asymmetry along the length of a CNT due to the imposed thermal gradient contributes to the diffusion enhancement of water confined in the CNT, but does not have a strong correlation with the applied thermal gradient. Analysis shows that the vibrational modes present in the center-of-mass oscillations of CNTs do not play any significant role in the development of the thermophoretic force on water. The low-frequency phonon vibrational modes of CNTs are suppressed due to the phonon coupling between water and the CNT. Also, we observed that the spectral heat current across the water-CNT interface dominates at frequencies below 5 THz, which is the same frequency range as radial breathing modes observed in the vibrational spectrum of CNT. This observation leads us to the conclusion that the coupling of radial breathing phonon modes contributes significantly to thermophoresis. This study substantiates the existence of phonon coupling at the water-CNT interface and quantifies the accumulated heat transfer across the interface.
通过纳米级器件对水进行可控输运是各种纳米流体系统设计和开发中的一项重要要求。进行了分子动力学模拟,以研究声子耦合诱导的水通过碳纳米管(CNT)的热泳输运。据信声子耦合在液 - 固界面的热输运中起着重要作用。在各种热梯度下研究了充满水和空的碳纳米管的热诱导振动模式。由于施加的热梯度,沿碳纳米管长度方向的空间不对称性有助于增强限制在碳纳米管内的水的扩散,但与施加的热梯度没有很强的相关性。分析表明,碳纳米管质心振荡中存在的振动模式在水的热泳力发展中不起任何显著作用。由于水与碳纳米管之间的声子耦合,碳纳米管的低频声子振动模式受到抑制。此外,我们观察到跨水 - 碳纳米管界面的光谱热流在低于5太赫兹的频率下占主导,这与在碳纳米管振动光谱中观察到的径向呼吸模式的频率范围相同。这一观察结果使我们得出结论,径向呼吸声子模式的耦合对热泳有显著贡献。这项研究证实了水 - 碳纳米管界面处声子耦合的存在,并量化了跨界面的累积热传递。