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来自邻位烷氧基取代酚的氢原子转移反应:一种实验方法。

Hydrogen-atom transfer reactions from ortho-alkoxy-substituted phenols: an experimental approach.

作者信息

Amorati Riccardo, Menichetti Stefano, Mileo Elisabetta, Pedulli Gian Franco, Viglianisi Caterina

机构信息

Dipartimento di Chimica Organica A. Mangini, Università di Bologna, Via S. Giacomo 11, 40126 Bologna, Italy.

出版信息

Chemistry. 2009;15(17):4402-10. doi: 10.1002/chem.200802454.

Abstract

The role of intramolecular hydrogen bonding (HB) on the bond-dissociation enthalpy (BDE) of the phenolic O-H and on the kinetics of H-atom transfer to peroxyl radicals (k(inh)) of several 2-alkoxyphenols was experimentally quantified by the EPR equilibration technique and by inhibited autoxidation studies. These compounds can be regarded as useful models for studying the H-atom abstraction from 2-OR phenols, such as many lignans, reduced coenzyme Q and curcumin. The effects of the various substituents on the BDE(O-H) of 2-methoxy, 2-methoxy-4-methyl, 2,4-dimethoxyphenols versus phenol were measured in benzene solution as -1.8; -3.7; -5.4 kcal mol(-1), respectively. In the case of polymethoxyphenols, significant deviations from the BDE(O-H) values predicted by the additive effects of the substituents were found. The logarithms of the k(inh) constants in cumene were inversely related to the BDE(O-H) values, obeying a linear Evans-Polanyi plot with the same slope of other substituted phenols and a y-axis intercept slightly smaller than that of 2,6-dimethyl phenols. In the cases of phenols having the 2-OR substituent included in a five-membered condensed ring (i.e, compounds 9-11), both conformational isomers in which the OH group points toward or away from the oxygen in position 2 were detected by FTIR spectroscopy and the intramolecular HB strength was thus estimated. The contribution to the BDE(O-H) of the ortho-OR substituent in 9, corrected for intramolecular HB formation, was calculated as -5.6 kcal mol(-1). The similar behaviour of cyclic and non-cyclic ortho-alkoxy derivatives clearly showed that the preferred conformation of the OMe group in ortho-methoxyphenoxyl radicals is that in which the methyl group points away from the phenoxyl oxygen, in contrast to the geometries predicted by DFT calculations.

摘要

通过电子顺磁共振平衡技术和抑制自氧化研究,实验定量了分子内氢键(HB)对酚类O-H键解离焓(BDE)以及几种2-烷氧基酚向过氧自由基转移氢原子动力学(k(inh))的作用。这些化合物可被视为研究从2-OR酚(如许多木脂素、还原辅酶Q和姜黄素)中夺取氢原子的有用模型。在苯溶液中,测量了2-甲氧基、2-甲氧基-4-甲基、2,4-二甲氧基酚相对于苯酚的各种取代基对BDE(O-H)的影响,分别为-1.8;-3.7;-5.4 kcal mol(-1)。在多甲氧基酚的情况下,发现与取代基加和效应预测的BDE(O-H)值存在显著偏差。异丙苯中k(inh)常数的对数与BDE(O-H)值呈反比关系,遵循与其他取代酚相同斜率的线性埃文斯-波拉尼曲线,且y轴截距略小于2,6-二甲基酚的截距。对于2-OR取代基包含在五元稠环中的酚(即化合物9-11),通过傅里叶变换红外光谱检测到OH基团指向或远离2位氧的两种构象异构体,从而估算了分子内HB强度。经分子内HB形成校正后,计算出9中邻位-OR取代基对BDE(O-H)的贡献为-5.6 kcal mol(-1)。环状和非环状邻位烷氧基衍生物的类似行为清楚地表明,邻甲氧基苯氧基自由基中OMe基团的优选构象是甲基远离苯氧基氧的构象,这与密度泛函理论计算预测的几何结构相反。

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