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Influence of nonbonded interactions in the kinetics of formation of chalcogenol esters from chalcogenoacetylenes

机译:非键相互作用对硫族乙炔形成硫属醇酯动力学的影响

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摘要

The influence of nonbonded interactions in the kinetics of formation of chalcogenol (thiol and selenol) esters from chalcogenoacetylenes was studied by molecular modeling. Using semiempirical and density functional theory methods it was possible to explain the differences between the reaction rates for the analogous sulfur and selenium chalcogenoacetylenes as well as evaluate the structural and electronic effects (nonbonded interactions) on the formation of the esters. The differences in the reaction rates can be explained in terms of the carbocation stabilization by the chalcogen atom. It is proposed that these differences are due to the differences in the intensity of the dominant interaction pi(CO)(*)(Y) between the nonbonding orbitals of sulfur and selenium with the vacant orbital of carbon in the cationic transition state. (C) 2003 Wiley Periodicals, Inc. [References: 33]
机译:通过分子建模研究了非键相互作用对硫族炔基乙炔形成硫属元素醇(硫醇和硒醇)酯动力学的影响。使用半经验和密度泛函理论方法,可以解释相似硫和硒硫属乙炔的反应速率之间的差异,并评估酯形成的结构和电子效应(非键相互作用)。反应速率的差异可以用硫族元素原子对碳阳离子的稳定作用来解释。提出这些差异是由于硫和硒的非键合轨道与阳离子过渡态碳的空轨道之间的主要相互作用pi(CO)(*)/ n(Y)的强度不同所致。 (C)2003 Wiley Periodicals,Inc. [参考:33]

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