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通过 DFT 方法计算苯氧自由基的氢超精细分裂常数:回归分析揭示氢键效应。

Hydrogen hyperfine splitting constants for phenoxyl radicals by DFT methods: regression analysis unravels hydrogen bonding effects.

机构信息

Department of Organic Chemistry A. Mangini, University of Bologna, Via S. Giacomo 11, 40126, Bologna, Italy.

出版信息

Org Biomol Chem. 2010 Jul 21;8(14):3136-41. doi: 10.1039/c003302b. Epub 2010 May 17.

Abstract

DFT calculations using the B3LYP functional, medium-sized basis sets and empirical scaling of the results provide quantitative estimates of the hydrogen isotropic hyperfine splitting constants (hscs) in 2,6-di-alkyl phenoxyl radicals (1-11). Literature hscs for phenoxyl (12), 4-methylphenoxyl (13) and 4-methoxyphenoxyl (14) radicals, on the other hand, are poorly predicted by using this method. This different behaviour is explained considering that experimental hscs of 12-14 are influenced by H-bonds formed between phenoxyls and their parent phenols, usually present in large amounts in solution as radical precursors. This was confirmed experimentally by measuring the EPR spectra of 12-14 in the presence of increasing amounts of their parent phenols, and by calculating the hscs in the case of the formation of 1 : 1 and 1 : 2 complexes between these radicals and phenol. Relevance of these results to the choice of reference hscs as benchmarks for theoretical calculations and to kinetic and thermochemical determinations on unhindered phenoxyl radicals is discussed.

摘要

使用 B3LYP 泛函、中等大小的基组和经验校正对结果进行的 DFT 计算,为 2,6-二烷基苯氧自由基(1-11)的氢各向异性超精细分裂常数(hscs)提供了定量估计。另一方面,使用这种方法对苯氧自由基(12)、4-甲基苯氧自由基(13)和 4-甲氧基苯氧自由基(14)的文献 hscs 预测效果不佳。考虑到实验 hscs 受到苯氧自由基与其母体苯酚之间形成的氢键的影响,而在溶液中通常以大量的自由基前体形式存在,这种不同的行为可以得到解释。通过测量 12-14 在其母体苯酚含量逐渐增加时的 EPR 光谱,并在这些自由基与苯酚形成 1:1 和 1:2 络合物的情况下计算 hscs,实验证实了这一点。讨论了这些结果与选择参考 hscs 作为理论计算基准以及对无阻碍苯氧自由基的动力学和热化学测定的相关性。

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