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首页> 外文期刊>Polycyclic Aromatic Compounds: The Journal of International Society for Polycyclic Aromatic Compounds >Nucleus-Independent Chemical Shift Criterion for Aromaticity in Some of the Corannulene Derivatives as Carbon Nanostructure: Effect of Substituent Groups on Aromaticity
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Nucleus-Independent Chemical Shift Criterion for Aromaticity in Some of the Corannulene Derivatives as Carbon Nanostructure: Effect of Substituent Groups on Aromaticity

机译:某些独立的化学位移准则,用于某些Corannulene衍生物作为碳纳米结构的芳香性:取代基对芳香性的影响

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Substitution of the peripheral H atoms in the corannulene molecule as a carbon nanostructure by OH, CH3, NH2, and NO2 groups was done and the obtained structures were optimized employing MP2/6-31G(d) level of theory. Calculations of the nucleus-independent chemical shift (NICS) were performed to analyze the aromaticity of the corannulene rings and its derivatives upon substitution at B3LYP/6-311+G(d) level of theory. Comparison of NICS(1)(zz) for concave and convex sides of corannulene derivatives indicated that substitution of H atoms in the corannulene molecule with OH, CH3, NO2, and NH2 groups leads to decreasing of the aromaticity character of corannulene. We discussed about two efficient factors on the aromaticity and antiaromaticity of polycyclic aromatic compounds: electron donating or withdrawing and resonance effects. We showed that NICS values in all structures are strongly dependent on the type, number, and position of the substituted groups.
机译:通过OH,CH3,NH2和NO2基团取代了Corannulene分子中周围的H原子作为碳纳米结构,并使用MP2 / 6-31G(d)的理论水平对获得的结构进行了优化。在理论上以B3LYP / 6-311 + G(d)水平进行取代核无关化学位移(NICS)的计算,以分析氢化萘环及其衍生物的芳香性。 NICS(1)(zz)对香兰素衍生物的凹凸面的比较表明,香兰素分子中的H原子被OH,CH3,NO2和NH2取代会降低香兰素的芳香性。我们讨论了有关多环芳族化合物的芳香性和抗芳香性的两个有效因素:给电子或吸电子以及共振效应。我们表明,所有结构中的NICS值都强烈取决于取代基的类型,数量和位置。

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