首页> 外文期刊>Structural Chemistry >Computational study on the reaction mechanism of the gas-phase atom-negative ion of S?+?NO_2~?: comparative study of mechanism with S?+?O_3 reaction as isoelectronic and isostructure systems
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Computational study on the reaction mechanism of the gas-phase atom-negative ion of S?+?NO_2~?: comparative study of mechanism with S?+?O_3 reaction as isoelectronic and isostructure systems

机译:S?+?NO_2〜?的气相原子负离子反应机理的计算研究:以S?+?O_3反应为等电子和同构结构的机理的比较研究

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The reaction mechanism of sulfur vapor (S) with nitrite ion (NO _2 ~?) has been investigated theoretically on the triplet and singlet potential energy surfaces (PESs). All stationary points for the title reaction have been optimized at the B3LYP/6-311+G(3df) level. The energetic data have been obtained at the CCSD(T)//B3LYP level employing the 6-311+G(3df) basis set. Five stable collision complexes, ~3 IN1 (S-ONO ~?), ~3 IN2 (cyclic SONO ~?), ~1 IN1 (cis S-ONO ~?), ~1 IN2 (S-NO _2 ~?), and ~1 IN3 (trans S-ONO ~?), have been considered on the triplet and singlet PESs through barrier-less and exothermic processes. By starting from these complexes, a simple mechanism has been obtained on the triplet PES while a complex mechanism has been considered on the singlet PES. The calculated results show that there are no favorable paths for the reaction of S with NO _2 ~? on the singlet PES. Therefore, the S + NO _2 ~? reaction proceeds only on the triplet PES to produce 3 ~SO + ~3 NO ~? as main products. The results from the comparative study of S + NO _2 ~? reaction mechanism with S + O _3 (as isoelectronic and isostructure reactions) on the singlet PES show similarities in the overall trend of reaction mechanism and atom connectivity and differences in the stability of intermediates and the energy barriers of transition states.
机译:理论上已经研究了三重态和单重态势能表面(PESs)上硫蒸气(S)与亚硝酸根离子(NO _2〜?)的反应机理。标题反应的所有固定点均已在B3LYP / 6-311 + G(3df)水平上进行了优化。使用6-311 + G(3df)基集在CCSD(T)// B3LYP级别获得了能量数据。五个稳定的碰撞复合物〜3 IN1(S-ONO〜?),〜3 IN2(循环SONO〜?),〜1 IN1(顺式S-ONO〜?),〜1 IN2(S-NO _2〜?),通过无障碍和放热过程,已在三重态和单重态PES上考虑了〜1 IN3(反式S-ONO〜?)。通过从这些复合物开始,已经在三重态PES上获得了一种简单的机制,而在单重态PES上已经考虑了一种复杂的机制。计算结果表明,S与NO _2〜?的反应没有有利的途径。在单重态PES上。因此,S + NO _2〜?反应仅在三重态PES上进行,生成3〜SO +〜3 NO〜?作为主要产品。 S + NO _2〜?的比较研究结果。单线态PES上具有S + O _3的反应机理(等电子和同构结构反应)在反应机理和原子连通性的总体趋势中显示出相似之处,并且中间体的稳定性和过渡态的能垒也有所不同。

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