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Electronic structures and bonding properties of chlorine-treated nitrogenated carbon nanotubes: X-ray absorption and scanningphotoelectron microscopy studies

机译:氯处理的氮化碳纳米管的电子结构和键合特性:X射线吸收和扫描光电子显微镜研究

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The electronic and bonding properties of nitrogenated carbon nanotubes (N-CNTs) exposed to chlorine plasma were investigated using C and N K-edge x-ray absorption near-edge structure (XANES) and scanning photoelectron microscopy (SPEM). The C and N K-edge XANES spectra of chlorine-treated N-CNTs consistently reveal the formation of pyridinelike N-CNTs by the observation of 1s→π~*(e_(2u)) antibonding and 1s→π~*(b_(2g)) bonding states. The valence-band photoemission spectra obtained from SPEM images indicate that chlorination of the nanotubes enhances the C-N bonding. First-principles calculations of the partial densities of states in conjunction with C K-edge XANES data identify the presence of C-Cl bonding in chlorine treated N-CNTs.
机译:使用C和N K边缘x射线吸收近边缘结构(XANES)和扫描光电子显微镜(SPEM)研究了暴露于氯等离子体的氮化碳纳米管(N-CNT)的电子和键合性能。氯处理的N-CNT的C和N K边缘XANES光谱通过观察1s→π〜*(e_(2u))反键和1s→π〜*(b_( 2g))键合状态。从SPEM图像获得的价带光发射光谱表明,纳米管的氯化增强了C-N键合。结合C K-edge XANES数据对状态的部分密度进行第一性原理计算,可以确定氯处理的N-CNT中存在C-Cl键。

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