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Water chain encapsulated in carbon nanotube revealed by density functional theory

机译:密度泛函理论揭示碳纳米管中包封的水链

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The noncovalent interactions between encapsulated water chains and single-walled carbon nanotube (SWCNT) are studied using a self-consistent charge density functional tight binding method with dispersion correction. The most interesting and important feature we observe is the diameter shrinking of CNTs when water chains are confined inside SWCNT. The diameter shrinking of CNTs can be suggested to the original of the van der Waals and H-π interaction between water chains and CNTs. The calculated Raman spectra show the interactions between SWCNTs and water chains probably give rise to a kind of "mode hardening effect," which agrees with the diameter shrinking of CNTs when water chains are confined inside SWCNT.
机译:使用具有弥散校正的自洽电荷密度功能紧密结合方法研究了包封的水链与单壁碳纳米管(SWCNT)之间的非共价相互作用。我们观察到的最有趣和最重要的特征是,当水链被限制在SWCNT内部时,CNT的直径缩小。碳纳米管的直径缩小可以被认为是范德华的原始特征,也是水链与碳纳米管之间的H-π相互作用。计算得出的拉曼光谱表明,SWCNT与水链之间的相互作用可能会引起一种“模态硬化效应”,这与将水链限制在SWCNT内时CNT的直径收缩是一致的。

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