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Water-ion permselectivity of narrow-diameter carbon nanotubes

机译:窄直径碳纳米管的水离子渗透性

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Carbon nanotube (CNT) pores, which mimic the structure of the aquaporin channels, support extremely high water transport rates that make them strong candidates for building artificial water channels and high-performance membranes. Here, we measure water and ion permeation through 0.8-nm-diameter CNT porins (CNTPs)—short CNT segments embedded in lipid membranes—under optimized experimental conditions. Measured activation energy of water transport through the CNTPs agrees with the barrier values typical for single-file water transport. Well-tempered metadynamics simulations of water transport in CNTPs also report similar activation energy values and provide molecular-scale details of the mechanism for water entry into these channels. CNTPs strongly reject chloride ions and show water-salt permselectivity values comparable to those of commercial desalination membranes.
机译:碳纳米管(CNT)毛孔模仿水素通道的结构,支持极高的水运输速率,使其成为建立人造水通道和高性能膜的强烈候选者。在此,我们通过在优化的实验条件下测量嵌入脂质膜中的0.8-nm直径的CNT孔蛋白(CNTPS)-short CNT段来测量水和离子渗透。通过CNTP测量水路的激活能量与单档水运的典型屏障值同意。 CNTPS中水运输的升高的Metadynamics模拟还报告了类似的激活能量值,并提供了用于这些通道的水机制的分子尺度细节。 CNTPS强烈抑制氯离子,并显示出与商业脱盐膜的水 - 盐偏移量值相当。

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