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纳米孔中宏观有序的水。

Macroscopically ordered water in nanopores.

作者信息

Köfinger Jürgen, Hummer Gerhard, Dellago Christoph

机构信息

Faculty of Physics, University of Vienna, Boltzmanngasse 5, 1090 Vienna, Austria.

出版信息

Proc Natl Acad Sci U S A. 2008 Sep 9;105(36):13218-22. doi: 10.1073/pnas.0801448105. Epub 2008 Sep 2.

Abstract

Water confined into the interior channels of narrow carbon nanotubes or transmembrane proteins forms collectively oriented molecular wires held together by tight hydrogen bonds. Here, we explore the thermodynamic stability and dipolar orientation of such 1D water chains from nanoscopic to macroscopic dimensions. We show that a dipole lattice model accurately recovers key properties of 1D confined water when compared to atomically detailed simulations. In a major reduction in computational complexity, we represent the dipole model in terms of effective Coulombic charges, which allows us to study pores of macroscopic lengths in equilibrium with a water bath (or vapor). We find that at ambient conditions, the water chains filling the tube are essentially continuous up to macroscopic dimensions. At reduced water vapor pressure, we observe a 1D Ising-like filling/emptying transition without a true phase transition in the thermodynamic limit. In the filled state, the chains of water molecules in the tube remain dipole-ordered up to macroscopic lengths of approximately 0.1 mm, and the dipolar order is estimated to persist for times up to approximately 0.1 s. The observed dipolar order in continuous water chains is a precondition for the use of nanoconfined 1D water as mediator of fast long-range proton transport, e.g., in fuel cells. For water-filled nanotube bundles and membranes, we expect anti-ferroelectric behavior, resulting in a rich phase diagram similar to that of a 2D Coulomb gas.

摘要

限制在狭窄碳纳米管或跨膜蛋白内部通道中的水形成了由紧密氢键维系在一起的集体取向分子线。在此,我们探究了此类从纳米尺度到宏观尺度的一维水链的热力学稳定性和偶极取向。我们表明,与原子级详细模拟相比,偶极晶格模型能准确重现一维受限水的关键特性。在大幅降低计算复杂度的情况下,我们用有效库仑电荷来表示偶极模型,这使我们能够研究与水浴(或蒸汽)处于平衡状态的宏观长度的孔隙。我们发现,在环境条件下,填充在管内的水链在宏观尺度上基本是连续的。在降低水蒸气压力时,我们观察到一维类似伊辛模型的填充/排空转变,在热力学极限下没有真正的相变。在填充状态下,管内的水分子链在长达约0.1毫米的宏观长度上保持偶极有序,并且估计偶极有序持续时间长达约0.1秒。在连续水链中观察到的偶极有序是将纳米受限一维水用作快速长程质子传输介质(例如在燃料电池中)的前提条件。对于充满水的纳米管束和膜,我们预计会出现反铁电行为,从而导致类似于二维库仑气体的丰富相图。

相似文献

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Macroscopically ordered water in nanopores.纳米孔中宏观有序的水。
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