首页> 外文期刊>Fullerenes, nanotubes, and carbon nanostructures >Ab initio study of direct diffusion pathway for H ~+, Li ~+, Na ~+, K ~+ cations into the (3,3), (4,4), and (5,5) open-ended single-walled carbon nanotubes
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Ab initio study of direct diffusion pathway for H ~+, Li ~+, Na ~+, K ~+ cations into the (3,3), (4,4), and (5,5) open-ended single-walled carbon nanotubes

机译:H〜+,Li〜+,Na〜+,K〜+阳离子直接扩散到(3,3),(4,4)和(5,5)开放式单壁中的从头算研究碳纳米管

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摘要

To probe the ability of ions to enter and leave a nanotube interior, we calculated the energetic of a direct diffusion pathway for H ~+, Li ~+, Na ~+, K ~+ cations to move through the (3,3), (4,4) and (5,5) open-ended single-walled carbon nanotubes (SWNTs) with ab initio techniques. For three nanotubes, there is no energy barrier for the Li ~+ ions to enter the open tubes. In fact, there is a net decrease in the energy of the system, showing that the nanotubes actually act as an attractor for the Li ~+ ions. Similar results also hold for the H ~+ and Na ~+ ions into (4,4) nanotube. These ions can easily diffuse and leave the nanotube from other side. H ~+ strongly attract with the (3,3) nanotube but cannot diffuse and is trapped. Our results show that the entry of K ~+ and Na ~+ ions into (3,3) nanotube is forbidden. In contrast, (4,4) and (5,5) nanotubes for H ~+ and K ~+ ions and (5,5) nanotubes for Na ~+ act as ion channels that conduct these ions. In all NT-H systems and (3,3) NT-Li system, the charge transferred between ion and nanotube and nanotube achieve the positive charge.
机译:为了探查离子进入和离开纳米管内部的能力,我们计算了H〜+,Li〜+,Na〜+,K〜+阳离子穿过(3,3)的直接扩散途径的能量, (4,4)和(5,5)具有从头开始技术的开放式单壁碳纳米管(SWNT)。对于三个纳米管,Li〜+离子进入开口管没有能量垒。实际上,系统的能量净减少,表明纳米管实际上充当了Li〜+离子的吸引子。对于进入(4,4)纳米管的H〜+和Na〜+离子,也具有类似的结果。这些离子很容易扩散并从另一侧离开纳米管。 H〜+强烈吸引(3,3)纳米管,但不能扩散并被捕获。我们的结果表明,禁止K〜+和Na〜+离子进入(3,3)纳米管。相反,用于H〜+和K〜+离子的(4,4)和(5,5)纳米管以及用于Na〜+的(5,5)纳米管充当传导这些离子的离子通道。在所有NT-H系统和(3,3)NT-Li系统中,在离子与纳米管和纳米管之间转移的电荷实现正电荷。

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