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Intramolecular hydrogen bond in the hydroxycyclohexadienyl peroxy radicals

机译:羟基环己二烯基过氧自由基中的分子内氢键

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The hydroxycyclohexadienyl peroxy radicals (HO-C6H6-O-2) produced from the reaction of OH-benzene adduct with 0, were studied with density functional theory (DFT) calculations to determine their characteristics. The optimized geometries, vibrational frequencies, and total energies of 2-hydroxycyclohexadienyl peroxy radical H, and 4-hydroxycyclohexadienyl peroxy radical IIIs were calculated at the following theoretical levels, B3LYP/6-31G(d), BRYP/6-311G(dp), and B3LYP/6-311+G(d,p). Both were shown to contain a red-shifted intramolecular hydrogen bond (O-H...O-H bond). According to atoms-in-molecules (AIM) analysis, the intramolecular hydrogen bond in the 2-hydroxycyclohexadienyl peroxy radical IIs is stronger than that one in 4-hydroxycyclohexadienyl peroxy radical R, and the former is the most stable conformation among its isomers. Generally speaking, hydrogen bonding in these radicals plays an important role to make them more stable. Based on natural bond orbital (NBO) analysis, the stabilization energy between orbitals is the main factor to produce red-shifted intramolecular hydrogen bond within these peroxy radicals. The hyperconjugative interactions can promote the transfer of some electron density to the O-H antibonding orbital, while the increased electron density in the O-H antibonding orbital leads to the elongation of the O-H bond and the red shift of the O-H stretching frequency. (c) 2006 Wiley Periodicals, Inc.
机译:用密度泛函理论(DFT)计算研究了OH-苯加合物与0反应生成的羟基环己二烯基过氧自由基(HO-C6H6-O-2)。在以下理论水平B3LYP / 6-31G(d),BRYP / 6-311G(dp)处计算出2-羟基环己二烯基过氧自由基H和4-羟基环己二烯基过氧自由基III的最佳几何形状,振动频率和总能量,以及B3LYP / 6-311 + G(d,p)。两者都显示出包含红移的分子内氢键(O-H ... O-H键)。根据分子内原子(AIM)分析,2-羟基环己二烯基过氧自由基IIs中的分子内氢键比4-羟基环己二烯基过氧自由基R中的一个更强,前者是其异构体中最稳定的构象。一般而言,这些自由基中的氢键起使它们更稳定的重要作用。根据自然键轨道(NBO)分析,轨道之间的稳定能是在这些过氧自由基中产生红移的分子内氢键的主要因素。超共轭相互作用可以促进一些电子密度向O-H反键轨道的转移,而O-H反键轨道中增加的电子密度导致O-H键的延长和O-H拉伸频率的红移。 (c)2006年Wiley Periodicals,Inc.

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