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First-Principles Studies on Carbon Nanotubes Functionalized with Azomethine Ylides

机译:偶氮甲Y叶立德功能化的碳纳米管的第一性原理研究

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摘要

Theoretical studies based on density functional theory framework have been performed on covalently functionalized carbon nanotubes (NTs) with azomethine ylides using SIESTA and CPMD codes. In view of the binding energies, it is found that armchair tubes favor functionalization at C—C bonds slanted to the tube axes, whereas zigzag NTs prefer attachment of the ylides at segments parallel to the tube axes. It is also suggested that the geometry of pyrrolidine rings attached to NTs strongly depends on the binding segments. The dependency is attributed to the degree of π-orbital alignment. Comparison of various functionalized derivatives on armchair tubes shows that the binding segments and atomic types at the segments significantly influence the electronic band structures near the Fermi energy. In metallic NTs, the covalent functionalization leads to opening of band gaps, whereas the effect of functionalization on the change of band gap energies is negligible for semiconducting NTs.
机译:基于密度泛函理论框架的理论研究已使用SIESTA和CPMD代码对带有甲亚胺盐化物的共价官能化碳纳米管(NTs)进行了研究。考虑到结合能,发现扶手椅管有利于在倾斜于管轴的CC键处的官能化,而之字形NT更喜欢在平行于管轴的节段上结合叶立德。还建议与NTs连接的吡咯烷环的几何形状强烈取决于结合链段。依赖性归因于π轨道对准的程度。扶手椅管上各种功能化衍生物的比较表明,结合链段和链段上的原子类型显着影响费米能量附近的电子能带结构。在金属NT中,共价官能化导致带隙的打开,而功能化对带隙能量变化的影响对于半导体NTs可以忽略不计。

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