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Single-walled carbon nanotubes functionalized by a series of dichlorocarbenes: DFT study

机译:通过一系列二氯卡宾官能化的单壁碳纳米管:DFT研究

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The structural and elastic properties of neutral and ionized dichlorocarbene (CCl2) functionalized single-walled carbon nanotubes (SWCNTs) were studied using density functional theory (DFT). The Young's modulus of ionized pristine SWCNTs is found to decrease in comparison to that of neutral models. The interesting effect of increase in Young's modulus values of ionized functionalized SWCNTs is observed. We ascribe this feature to the concurrent processes of the bond elongation on ionization and the local deformation on cycloaddition. The strong dependence of the elasticity modulus on the number of addends is also observed. However, the CCl2-attached SWCNTs in their neutral and ionized forms remain strong enough to be suitable for the reinforcement of composites. In contrast to the elastic properties, the binding energies do not change significantly, irrespective of CCl2 coverage.
机译:使用密度泛函理论(DFT)研究了中性和离子化二氯卡宾(CCl2)功能化的单壁碳纳米管(SWCNT)的结构和弹性性能。发现电离的原始SWCNT的杨氏模量与中性模型相比降低了。观察到增加电离的功能化SWCNT的杨氏模量值的有趣效果。我们将此特征归因于电离键伸长和环加成时局部变形的并发过程。还观察到弹性模量对加数的强烈依赖性。但是,中性和离子化形式的CCl2连接的SWCNT仍然足够坚固,适合于增强复合材料。与弹性特性相反,无论CCl2覆盖率如何,结合能均不会显着变化。

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