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DFT Investigation of Hydrogen Atom Abstraction from NHC-Boranes by Methyl Ethyl and Cyanomethyl Radicals—Composition and Correlation Analysis of Kinetic Barriers

机译:甲基乙基和氰基甲基自由基 - 乙基硼酸盐萃取的DFT调查甲基乙基和氰基甲基 - 组合物 - 动力学屏障的相关分析

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摘要

Understanding the hydrogen atom abstraction (HAA) reactions of N-heterocyclic carbene (NHC)-boranes is essential for extending the practical applications of boron chemistry. In this study, density functional theory (DFT) computations were performed for the HAA reactions of a series of NHC-boranes attacked by •CH2CN, Me• and Et• radicals. Using the computed data, we investigated the correlations of the activation and free energy barriers with their components, including the intrinsic barrier, the thermal contribution of the thermodynamic reaction energy to the kinetic barriers, the activation Gibbs free energy correction and the activation zero-point vibrational energy correction. Furthermore, to describe the dependence of the activation and free energy barriers on the thermodynamic reaction energy or reaction Gibbs free energy, we used a three-variable linear model, which was demonstrated to be more precise than the two-variable Evans–Polanyi linear free energy model and more succinct than the three-variable Marcus-theory-based nonlinear HAA model. The present work provides not only a more thorough understanding of the compositions of the barriers to the HAA reactions of NHC-boranes and the HAA reactivities of the substrates but also fresh insights into the suitability of various models for describing the relationships between the kinetic and thermodynamic physical quantities.
机译:了解N-杂环基石(NHC) - 硼烷的氢原子抽象(HAA)反应对于延长硼化学的实际应用至关重要。在这项研究中,对由•CH2CN,ME•和ET的一系列NHC-硼烷的HAA反应进行密度泛函理论(DFT)计算。使用计算的数据,我们调查了激活和自由能屏障与它们的组件的相关性,包括内在屏障,热力学反应能量对动力学屏障的热贡献,激活吉布斯自由能量校正和激活零点振动能量校正。此外,为了描述激活和自由能屏障对热力学反应能量或反应的依赖性,我们使用了三种可变的线性模型,该模型比双变量evans-polanyi线性更精确能量模型和更简洁的三变量基于Marcus理论的非线性的非线性Haa模型。本工作不仅提供了对NHC-硼(NHC-硼(NHC-硼烷的Haa反应的屏障组成以及所述基材的Haa Reactivitives)的组合物,而且还提供了对各种模型的适用性的新洞察力,用于描述动力学和热力学之间的关系物理量。

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