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首页> 外文期刊>International Journal of Quantum Chemistry >Computational study of hexanal peroxy radical-water complexes
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Computational study of hexanal peroxy radical-water complexes

机译:己醛过氧自由基-水配合物的计算研究

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The results of an ab initio study on a family of hydroxy peroxy radical-water complexes formed from the oxidation of E-2-hexenal, which constitutes an important component of biogenic atmospheric emissions, are reported. Binding energies for the β-hydroxy-δ-peroxy hexanal (β- and δ-positions are relative to the carbonyl) radical-water complex and the δ-hydroxy-β-peroxy hexanal radical-water complex are predicted to be to 3.8 and 3.6 kcal/mol, respectively, computed at the MP2/6-311++G(2d,2p)//B3LYP/6-311++G(2d,2p) computational level. Natural bond orbital reveals that conventional hydrogen bonding between the water and the hydroxy and aldehyde functional groups of the radical are primarily responsible for the stability of the complex. It can be shown that the peroxy moiety contributes very little to the stability of the radical-water complexes. Thermochemistry calculations reveal estimated equilibrium constants that are comparable to those recently reported for several hydroxy isoprene radical-water complexes. The results of this report suggest that the hexanal peroxy radical-water complexes are expected to play a significant role in the complex chemistry of the atmosphere.
机译:据报道,从头开始研究了由E-2-hexenal氧化而形成的羟基过氧自由基-水络合物的家族,它是生物大气排放的重要组成部分。 β-羟基-δ-过氧己醛基-水配合物的结合能,预计δ-羟基-β-过氧己醛基-水配合物的结合能为3.8和。在MP2 / 6-311 ++ G(2d,2p)// B3LYP / 6-311 ++ G(2d,2p)计算级别上分别计算为3.6 kcal / mol。天然键轨道显示,水与自由基的羟基和醛官能团之间的常规氢键主要负责配合物的稳定性。可以证明,过氧部分对自由基-水配合物的稳定性几乎没有贡献。热化学计算揭示了估计的平衡常数,该常数与最近报道的几种羟基异戊二烯自由基-水络合物的平衡常数相当。该报告的结果表明,己醛过氧自由基-水配合物有望在大气的复杂化学中发挥重要作用。

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