Gkoura L, Diamantopoulos G, Fardis M, Homouz D, Alhassan S, Beazi-Katsioti M, Karagianni M, Anastasiou A, Romanos G, Hassan J, Papavassiliou G
Institute of Nanoscience and Nanotechnology, NCSR Demokritos, 15310 Aghia Paraskevi, Attiki, Greece.
Department of Chemical Engineering, Khalifa University of Science and Technology, 127788 Abu Dhabi, UAE.
Biomicrofluidics. 2020 Jun 19;14(3):034114. doi: 10.1063/5.0005398. eCollection 2020 May.
It is well known that water inside hydrophobic nano-channels diffuses faster than bulk water. Recent theoretical studies have shown that this enhancement depends on the size of the hydrophobic nanochannels. However, experimental evidence of this dependence is lacking. Here, by combining two-dimensional nuclear magnetic resonance diffusion-relaxation ( - ) spectroscopy in the stray field of a superconducting magnet and molecular dynamics simulations, we analyze the size dependence of water dynamics inside Carbon Nanotubes (CNTs) of different diameters ( - nm), in the temperature range of - K. Depending on the CNT diameter, the nanotube water is shown to resolve in two or more tubular components acquiring different self-diffusion coefficients. Most notably, a favorable CNT diameter range ( - nm) is experimentally verified for the first time, in which water molecule dynamics at the center of the CNTs exhibits distinctly non-Arrhenius behavior, characterized by ultrafast diffusion and extraordinary fragility, a result of significant importance in the efforts to understand water behavior in hydrophobic nanochannels.
众所周知,疏水纳米通道内的水扩散速度比本体水快。最近的理论研究表明,这种增强作用取决于疏水纳米通道的尺寸。然而,缺乏这种依赖性的实验证据。在这里,通过结合超导磁体杂散场中的二维核磁共振扩散弛豫(-)光谱和分子动力学模拟,我们分析了在- K温度范围内不同直径(- 纳米)的碳纳米管(CNT)内水动力学的尺寸依赖性。根据碳纳米管的直径,纳米管内的水被显示为分解成两个或更多具有不同自扩散系数的管状组分。最值得注意的是,首次通过实验验证了一个有利的碳纳米管直径范围(- 纳米),其中碳纳米管中心的水分子动力学表现出明显的非阿伦尼乌斯行为,其特征是超快扩散和异常脆弱,这一结果对于理解疏水纳米通道中的水行为具有重要意义。