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Radiowave dielectric investigation of water confined in channels of carbon nanotubes

机译:限制在碳纳米管通道中的水的无线电波介电研究

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摘要

Structure and dynamics of water confined in channels of diameter of few nanometer in size strongly differ from the ones of water in the bulk phase. Here, we present radiowave dielectric relaxation measurements on water-filled single-walled carbon nanotubes, with the aim of highlighting some aspects on the molecular electric dipole organization of water responding to high spatial confinement in a hydrophobic environment. The observed dielectric spectra, resulting into two contiguous relaxation processes, allow us to separate the confined water in the interior of the nanotubes from external water, providing support for the existence in the confinement region of water domains held together by hydrogen bonds. Our results, based on the deconvolution of the dielectric spectra due to the presence of a bulk and a confined water phase, furnish a significantly higher Kirkwood correlation factor, larger than the one of water in bulk phase, indicating a strong correlation between water molecules inside nanotubes, not seen in bulk water.
机译:直径限制在几纳米大小的通道中的水的结构和动力学与本体相中的水有很大不同。在这里,我们提出了在充满水的单壁碳纳米管上的无线电波介电弛豫测量,目的是强调在疏水性环境中响应高空间限制的水分子电偶极子组织的某些方面。观察到的介电谱,导致两个连续的松弛过程,使我们能够将纳米管内部的封闭水与外部水分离,从而为由氢键保持在一起的水域的封闭区域的存在提供了支持。我们的结果基于存在大量和受限水相而引起的介电谱的反卷积,提供了明显更高的柯克伍德相关因子,大于本体相中的水之一,表明内部水分子之间具有很强的相关性纳米管,在散装水中看不到。

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