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Formation Mechanism of Benzo(a)pyrene: One of the Most Carcinogenic Polycyclic Aromatic Hydrocarbons (PAH)

机译:苯并(a)re的形成机理:最具致癌性的多环芳烃(PAH)之一

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摘要

The formation of polycyclic aromatic hydrocarbons (PAHs) is a strong global concern due to their harmful effects. To help the reduction of their emissions, a crucial understanding of their formation and a deep exploration of their growth mechanism is required. In the present work, the formation of benzo(a)pyrene was investigated computationally employing chrysene and benz(a)anthracene as starting materials. It was assumed a type of methyl addition/cyclization (MAC) was the valid growth mechanism in this case. Consequently, the reactions implied addition reactions, ring closures, hydrogen abstractions and intramolecular hydrogen shifts. These steps of the mechanism were computed to explore benzo(a)pyene formation. The corresponding energies of the chemical species were determined via hybrid density funcional theory (DFT), B3LYP/6-31+G(d,p) and M06-2X/6-311++G(d,p). Results showed that the two reaction routes had very similar trends energetically, the difference between the energy levels of the corresponding molecules was just 6.13 kJ/mol on average. The most stable structure was obtained in the benzo(a)anthracene pathway.
机译:多环芳烃(PAHs)的形成由于其有害作用而引起了全球的高度关注。为了帮助减少它们的排放,需要对它们的形成有一个至关重要的了解,并对它们的生长机制进行深入的探索。在目前的工作中,以铬和苯并(a)蒽为起始原料,对苯并(a)py的形成进行了计算研究。在这种情况下,假定一种类型的甲基加成/环化(MAC)是有效的生长机制。因此,这些反应暗示加成反应,闭环,氢提取和分子内氢转移。计算了机理的这些步骤以探索苯并(a)py的形成。化学物种的相应能量是通过杂化密度函数理论(DFT),B3LYP / 6-31 + G(d,p)和M06-2X / 6-311 ++ G(d,p)确定的。结果表明,两种反应途径在能量上具有非常相似的趋势,相应分子的能级之间的差异平均仅为6.13 kJ / mol。在苯并(a)蒽途径中获得最稳定的结构。

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