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α-芳基苯乙酮及相关化合物中酸性C-H键的平衡酸度和均裂键解离能

Equilibrium acidities and homolytic bond dissociation energies of acidic C-H bonds in alpha-arylacetophenones and related compounds.

作者信息

Alnajjar Mikhail S, Zhang Xian-Man, Gleicher Gerald J, Truksa Scott V, Franz James A

机构信息

Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington 99352, USA.

出版信息

J Org Chem. 2002 Dec 13;67(25):9016-22. doi: 10.1021/jo020275s.

Abstract

The equilibrium acidities (pK(AH)s) and the oxidation potentials of the congugate anions [E(ox)(A(-))s] were determined in dimethyl sulfoxide (DMSO) for eight ketones of the structure GCOCH(3) and 20 of the structure RCOCH(2)G, (where R = alkyl, phenyl and G = alkyl, aryl). The homolytic bond dissociation energies (BDEs) for the acidic C-H bonds of the ketones were estimated using the equation BDE(AH) = 1.37pK(AH) + 23.1E(ox)(A(-)) + 73.3. While the equilibrium acidities of GCOCH(3) were found to be dependent on the remote substituent G, the BDE values for the C-H bonds remained essentially invariant (93.5 +/- 0.5 kcal/mol). A linear correlation between pK(AH) values and [E(ox)(A(-))s] was found for the ketones. For RCOCH(2)G ketones, both pK(AH) and BDE values for the adjacent C-H bonds are sensitive to the nature of the substituent G. However, the steric bulk of the aryl group tends to exert a leveling effect on BDEs. The BDE of alpha-9-anthracenylacetophenone is higher than that of alpha-2-anthracenylacetophenone by 3 kcal/mol, reflecting significant steric inhibition of resonance in the 9-substituted system. A range of 80.7-84.4 kcal/mol is observed for RCOCH(2)G ketones. The results are discussed in terms of solvation, steric, and resonance effects. Ab initio density functional theory (DFT) calculations are employed to illustrate the effect of steric interactions on radical and anion geometries. The DFT results parallel the trends in the experimental BDEs of alpha-arylacetophenones.

摘要

在二甲基亚砜(DMSO)中测定了结构为GCOCH₃的8种酮以及结构为RCOCH₂G的20种酮(其中R = 烷基、苯基,G = 烷基、芳基)的平衡酸度(pK(AH))和共轭阴离子的氧化电位[E(ox)(A⁻)]。使用公式BDE(AH) = 1.37pK(AH) + 23.1E(ox)(A⁻) + 73.3估算了酮的酸性C - H键的均裂键解离能(BDE)。虽然发现GCOCH₃的平衡酸度取决于远程取代基G,但C - H键的BDE值基本保持不变(93.5 ± 0.5 kcal/mol)。发现酮的pK(AH)值与[E(ox)(A⁻)]之间存在线性相关性。对于RCOCH₂G酮,相邻C - H键的pK(AH)和BDE值都对取代基G的性质敏感。然而,芳基的空间位阻倾向于对BDE产生均化作用。α - 9 - 蒽基苯乙酮的BDE比α - 2 - 蒽基苯乙酮高3 kcal/mol,这反映了9 - 取代体系中显著的空间共振抑制作用。RCOCH₂G酮的BDE范围为80.7 - 84.4 kcal/mol。从溶剂化、空间位阻和共振效应方面对结果进行了讨论。采用从头算密度泛函理论(DFT)计算来说明空间相互作用对自由基和阴离子几何结构的影响。DFT结果与α - 芳基苯乙酮的实验BDE趋势一致。

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