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首页> 外文期刊>Tetrahedron >An ab initio and DFT study of homolytic substitution reactions by oxyacyl radicals at sulfur, selenium, and tellurium
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An ab initio and DFT study of homolytic substitution reactions by oxyacyl radicals at sulfur, selenium, and tellurium

机译:从头算和DFT研究硫,硒和碲上的氧酰基自由基进行的均质取代反应

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摘要

Homolytic substitution reactions of methoxycarbonyl radicals at the sulfur, selenium, and tellurium atoms in dimethyl sulfide, dimethyl selenide, and dimethyl telluride have been investigated using computational techniques. Ab initio and DFT calculations predict that attack of methoxycarbonyl radical at the sulfur and selenium containing molecules proceed via smooth transition states without the involvement of hypervalent intermediates. BHandHLYP/DZP calculated energy barriers (ΔE ~?) for these reactions range from 58.3 (S) to 34.6 (Se) kJ mol ~(-1). In contrast, calculations on the analogous reaction involving tellurium predict the involvement of an intermediate at MP2/DZP. BHandHLYP/DZP calculations provide an energy barrier (ΔE ~?) of 7.7 kJ mol ~(-1) for the reaction involving tellurium. These homolytic substitution reactions are predicted to be exothermic at all levels of theory with the forward reactions favoured by 11-28 kJ mol ~(-1) for attack at sulfur, 4-23 kJ mol ~(-1) for attack at selenium and by only 1-3 kJ mol ~(-1) for attack at tellurium.
机译:使用计算技术研究了二甲基硫醚,二甲基硒化物和二甲基碲化物中硫,硒和碲原子上甲氧基羰基的均质取代反应。从头算和DFT计算预测,甲氧基羰基自由基对含硫和硒分子的攻击是通过平稳的过渡态进行的,而没有高价中间体的参与。 BHandHLYP / DZP计算出的这些反应的能垒(ΔE〜?)为58.3(S)至34.6(Se)kJ mol〜(-1)。相反,关于涉及碲的类似反应的计算预测了MP2 / DZP上中间体的参与。 BHandHLYP / DZP计算为涉及碲的反应提供了7.7 kJ mol〜(-1)的能垒(ΔE〜?)。这些均质取代反应预计在理论的所有水平上都是放热的,正向反应有利于硫的进攻,正离子反应为11-28 kJ mol〜(-1),硒和硒的进攻为4-23 kJ mol〜(-1)。在碲中仅受到1-3 kJ mol〜(-1)的侵蚀。

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