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首页> 外文期刊>High Energy Chemistry >Quantum-Chemical Modeling of Photochemical Reaction between Nitromethane and Olefins to Form Olefin Oxides
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Quantum-Chemical Modeling of Photochemical Reaction between Nitromethane and Olefins to Form Olefin Oxides

机译:硝基甲烷与烯烃在烯烃氧化物中光化学反应的量子化学模型

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The reaction between olefins and nitro compounds in the T-1 state in the gas phase has been simulated using the uB3LYP/6-311g ++(d,p) method. The reaction mechanism has been studied and the activation energies for the interaction between nitromethane and ethene, propene, butene-1, butene-2, and isobutene have been determined. It has been found that the interaction between olefins and nitromethane in the triplet state (T-1) occurs in three stages. In the first reaction, nitromethane is excited to the S-1 state followed by the intersystem crossing to the T-1 state; in the second one, nitromethane in the T-1 state interacts with the olefin to form an intermediate biradical; in the third, the product of the second reaction decomposes to form nitrosomethane and olefin oxide.
机译:使用UB3Lyp / 6-311g ++(D,P)法模拟了气相中T-1状态中的烯烃和硝基化合物的反应。 已经研究了反应机理,并确定了用于硝基甲烷和乙烯,丙烯,丁烯-1,丁烯-2和异丁烯之间的相互作用的活化能量。 已经发现,三个阶段发生三重级(T-1)中烯烃和硝基甲烷之间的相互作用。 在第一反应中,将硝基甲烷激发到S-1状态,然后穿过T-1状态。 在第二个中,T-1状态中的硝基甲烷与烯烃相互作用以形成中间体荚膜; 在第三,第二反应的产物分解以形成亚硝基甲烷和烯烃氧化物。

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