Liu Runkeng, Liu Zhenyu, Zhao Yueqi, Cui Peilin, Wu Huiying
School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Nano Lett. 2024 Mar 20;24(11):3484-3489. doi: 10.1021/acs.nanolett.4c00287. Epub 2024 Mar 8.
A carbon nanotube (CNT) may facilitate near-frictionless water transport within it. In this work, we elucidate the slip flow characteristics for a CNT embedded in a silicon nitride matrix using the molecular dynamics (MD) method. We reveal that the wetting transparency of a CNT, the transmission of the membrane matrix wetting property over a CNT, cannot be ignored. Due to the effect of CNT wetting transparency, the orientation flip behavior of water molecules should be the primary cause of the entrance and exit losses, which is a dominant factor influencing the interfacial friction coefficient for the thin CNT membrane. The relationship between the friction coefficient and pore size follows a logarithmic function, which agrees well with the reported experimental data. Our findings bridge the gap between the MD prediction and experimental observation for water transport in a CNT membrane and provide a clear understanding of the mechanism behind its ultrafast flow performance.
碳纳米管(CNT)可能有助于其内部近乎无摩擦的水传输。在这项工作中,我们使用分子动力学(MD)方法阐明了嵌入氮化硅基体中的碳纳米管的滑流特性。我们发现,碳纳米管的润湿透明度,即膜基体的润湿特性在碳纳米管上的传递,不可忽视。由于碳纳米管润湿透明度的影响,水分子的取向翻转行为应该是进出口损失的主要原因,这是影响薄碳纳米管膜界面摩擦系数的一个主导因素。摩擦系数与孔径之间的关系遵循对数函数,这与报道的实验数据吻合良好。我们的研究结果弥合了碳纳米管膜中水传输的分子动力学预测与实验观察之间的差距,并为其超快流动性能背后的机制提供了清晰的理解。