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α-氢从硫醇、硫化物和硫羰化合物中的夺取反应动力学。

Kinetics of α hydrogen abstractions from thiols, sulfides and thiocarbonyl compounds.

机构信息

Laboratorium voor Chemische Technologie, Ghent University, Krijgslaan 281 S5, B-9000 Gent, Belgium.

出版信息

Phys Chem Chem Phys. 2012 Oct 5;14(37):12773-93. doi: 10.1039/c2cp41114h. Epub 2012 Aug 2.

DOI:10.1039/c2cp41114h
PMID:22854881
Abstract

Hydrogen abstraction reactions involving organosulfur compounds play an important role in many industrial, biological and atmospheric processes. Despite their chemical relevance, little is known about their kinetics. In this work a group additivity model is developed that allows predicting the Arrhenius parameters for abstraction reactions of α hydrogen atoms from thiols, alkyl sulfides, alkyl disulfides and thiocarbonyl compounds by carbon-centered radicals at temperatures ranging from 300 to 1500 K. Rate coefficients for 102 hydrogen abstractions were obtained using conventional transition state theory within the high-pressure limit. Electronic barriers were calculated using the CBS-QB3 method and the rate coefficients were corrected for tunneling and hindered rotation about the transitional bond. Group additivity values for 46 groups are determined. To account for resonance and hyperconjugative stabilization in the transition state, 8 resonance corrections were fitted to a set of 32 reactions. The developed group additivity scheme was validated using a test set containing an additional 30 reactions. The group additivity scheme succeeds in reproducing the rate coefficients on average within a factor of 2.4 at 300 K and 1.4 at 1000 K. Mean absolute deviations of the Arrhenius parameters amount to, respectively, 2.5 kJ mol(-1) for E(a) and 0.13 for log A, both at 300 and 1000 K. This work hence illustrates that the recently developed group additivity methods for Arrhenius parameters extrapolate successfully to hetero-element containing compounds.

摘要

涉及有机硫化合物的氢提取反应在许多工业、生物和大气过程中起着重要作用。尽管它们具有化学相关性,但对它们的动力学知之甚少。在这项工作中,开发了一种基团加和模型,该模型允许通过碳中心自由基预测温度范围为 300 至 1500 K 时硫醇、烷基硫醚、二烷基硫醚和硫羰基化合物的α氢原子提取反应的阿仑尼乌斯参数。使用传统过渡态理论在高压极限下获得了 102 次氢提取的速率系数。使用 CBS-QB3 方法计算电子势垒,并对隧穿和过渡键旋转受阻进行校正。确定了 46 个基团的基团加和值。为了考虑过渡态中的共振和超共轭稳定,对 32 个反应中的 8 个共振校正进行了拟合。使用包含另外 30 个反应的测试集验证了所开发的基团加和方案。该基团加和方案在 300 K 时平均成功地将速率系数在 2.4 倍以内重现,在 1000 K 时在 1.4 倍以内重现。阿仑尼乌斯参数的平均绝对偏差分别为 300 和 1000 K 时的 E(a)为 2.5 kJ mol(-1)和 log A 为 0.13。因此,这项工作表明,最近开发的用于阿仑尼乌斯参数的基团加和方法成功地外推到含有杂原子的化合物。

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