Ohba Tomonori, Ideta Keiko, Hata Koichiro, Yoon Seong-Ho, Miyawaki Jin, Hata Kenji
Graduate School of Science, Chiba University, 1-33 Yayoi, Inage, Chiba, 263-8522, Japan.
Institute for Materials Chemistry and Engineering, Kyushu University, 6-1 Kasuga-koen, Kasuga, Fukuoka, 816-8580, Japan.
Chemphyschem. 2016 Nov 4;17(21):3409-3415. doi: 10.1002/cphc.201600895. Epub 2016 Sep 20.
Water in carbon nanotubes is surrounded by hydrophobic carbon surfaces and shows anomalous structural and fast transport properties. However, the dynamics of water in hydrophobic nanospaces is only phenomenologically understood. In this study, water dynamics in hydrophobic carbon nanotubes is evaluated based on water relaxation using nuclear magnetic resonance spectroscopy and molecular dynamics simulations. Extremely fast relaxation (0.001 s) of water confined in carbon nanotubes of 1 nm in diameter on average is observed; the relaxation times of water confined in carbon nanotubes with an average diameter of 2 nm (0.40 s) is similar to that of bulk water (0.44 s). The extremely fast relaxation time of water confined in carbon nanotubes with an average diameter of 1 nm is a result of frequent energy transfer between water and carbon surfaces. Water relaxation in carbon nanotubes of average diameter 2 nm is slow because of the limited number of collisions between water molecules. The dynamics of interfacial water can therefore be controlled by varying the size of the hydrophobic nanospace.
碳纳米管中的水被疏水的碳表面所包围,并呈现出异常的结构和快速传输特性。然而,人们对疏水纳米空间中水的动力学仅从现象学上有所理解。在本研究中,基于核磁共振光谱法的水弛豫以及分子动力学模拟,对疏水碳纳米管中的水动力学进行了评估。观察到平均直径为1纳米的碳纳米管中受限水的弛豫极快(0.001秒);平均直径为2纳米的碳纳米管中受限水的弛豫时间(0.40秒)与 bulk 水的弛豫时间(0.44秒)相似。平均直径为1纳米的碳纳米管中受限水的弛豫时间极快,是水与碳表面之间频繁能量转移的结果。平均直径为2纳米的碳纳米管中的水弛豫较慢,这是由于水分子之间碰撞次数有限。因此,界面水的动力学可以通过改变疏水纳米空间的大小来控制。