X-H + H'(.) (X = F, Cl, Br, l) are studied by ab initio valence bond methods and the VB state correlation diagram (VBSCD) model. The reaction'/> Valence bond calculations of hydrogen transfer reactions: A general predictive pattern derived from theory
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Valence bond calculations of hydrogen transfer reactions: A general predictive pattern derived from theory

机译:氢转移反应的价键计算:从理论推导的一般预测模式

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Hydrogen abstraction reactions of the type X-. + H-H' --> X-H + H'(.) (X = F, Cl, Br, l) are studied by ab initio valence bond methods and the VB state correlation diagram (VBSCD) model. The reaction barriers and VB parameters of the VBSCD are computed by using the breathing orbital valence bond and valence bond configuration interaction methods. The combination of the VBSCD model and semiempirical VB theory leads to analytical expressions for the barriers and other VB quantities that match the ab initio VB calculations fairly well. The barriers are influenced by the endo- or exothermicity of the reaction, but the fundamental factor of the barrier is the average singlet-triplet gap of the bonds that are broken or formed in the reactions. Some further approximations lead to a simple formula that expresses the barrier for nonidentity and identity hydrogen abstraction reactions as a function of the bond strengths of reactants and products. The semiempirical expressions are shown to be useful not only for the model reactions that are studied in this work, but also for other nonidentity and identity hydrogen abstraction reactions that have been studied in previous articles.
机译:X-型的氢提取反应。 + H-H'-> X-H + H'(。)(X = F,Cl,Br,l)通过从头价键方法和VB状态相关图(VBSCD)模型进行研究。通过使用呼吸轨道价键和价键构型相互作用方法计算出VBSCD的反应势垒和VB参数。 VBSCD模型和半经验VB理论的结合导致了对势垒和其他VB量的解析表达式,这些表达式与从头算的VB计算非常吻合。势垒受反应的吸热或放热影响,但势垒的基本因素是在反应中断裂或形成的键的平均单线态-三重态间隙。一些进一步的近似导致了一个简单的公式,该公式表达了作为反应物和产物的结合强度的函数的不相同和相同氢提取反应的障碍。结果表明,半经验表达式不仅对本文研究的模型反应有用,而且对先前文章中研究的其他非同一性和同一性氢提取反应也很有用。

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