首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >The interaction of a gold atom with carbon nanohorn and carbon nanotube tips and their complexes with a CO molecule: A first principle calculation
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The interaction of a gold atom with carbon nanohorn and carbon nanotube tips and their complexes with a CO molecule: A first principle calculation

机译:金原子与碳纳米角和碳纳米管尖端及其与CO分子的配合物的相互作用:第一原理计算

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The interactions of a gold atom with: (a) a single-wall carbon nanohorn (SWNH) conic tip; (b) with a single-wall carbon nanotube (SWNT) tip; and (c) their complexes with a CO molecule were studied using first-principle calculations based on density functional theory. The analysis of the pyramidalization angle (theta(p)) as well as the pi-orbital misalignment angles indicate that there should be many reactive carbon sites on the tips of SWNH and SWNT. It was found that SWNH provides reactive sites that can more selectively interact with the target atom. We identified five sites on both the SWNT tip and the nanohorn where attachment of a gold atom leads to a stable complex. This metal is found to be bi-coordinated with the tip of SWNH, while it is mono-coordinated with the SWNT tip. The largest interaction energies are -10.75 kcal/mol and -16.17 kcal/mol, respectively. The CO probe molecule binds to Au on the Au/SWNH or Au/SWNT tips with interaction energies of -22.34 and -18.29 kcal/mol, respectively. The main contributions of the interaction with both carbon nanostructures stems from sigma-donation and pi-backbonding. The results suggest that SWNHs could be one of the promising candidates for the development of high-specifity nanosensors.
机译:金原子与以下物质的相互作用:(a)单壁碳纳米角(SWNH)圆锥形尖端; (b)具有单壁碳纳米管(SWNT)尖端; (c)使用基于密度泛函理论的第一性原理研究了它们与CO分子的配合物。锥化角(theta(p))以及pi轨道未对准角的分析表明,SWNH和SWNT的尖端上应该有许多活性炭位。发现SWNH提供了可以更选择性地与靶原子相互作用的反应性位点。我们在SWNT尖端和纳米角上均发现了五个位点,其中金原子的附着导致形成稳定的络合物。发现该金属与SWNH的尖端双配位,而与SWNT的尖端单配位。最大的相互作用能分别为-10.75 kcal / mol和-16.17 kcal / mol。 CO探针分子以-22.34 kcal / mol和-18.29 kcal / mol的相互作用能与Au / SWNH或Au / SWNT尖端上的Au结合。与这两个碳纳米结构相互作用的主要贡献来自于sigma-donation和pi-backbonding。结果表明SWNHs可能是发展高特异性纳米传感器的有前途的候选人之一。

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