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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Rate Constant of the HONO + HONO → H_2O + NO + NO_2 Reaction from ab Initio MO and TST Calculations
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Rate Constant of the HONO + HONO → H_2O + NO + NO_2 Reaction from ab Initio MO and TST Calculations

机译:从头算MO和TST计算得出HONO + HONO→H_2O + NO + NO_2反应的速率常数

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Kinetics and mechanism for the bimolecular decomposition of HONO have been studied by ab initio molecular orbital (G2M) and transition-state theory calculations. The reaction can take place by the interaction of a cis and a trans isomer or two cis or two trans isomers, via four-, five-, and six-member ring transition states, with decreasing reaction barriers as the size of the ring increases. The lowest energy path with a 13.7 kcal/mol barrier was found to occur by the six-member ring TS1 formed by the reaction of cis- and trans-HONO. A similar six-member ring TS (TS2) formed by two cis isomers has a barrier height of 15.1 kcal/mol, which is very close to the 5-ring TS formed by two trans isomers, 15.7 kcal/mol. The total rate constant computed with the ab initio MO results, including the three reaction channels mentioned above and an additional channel involving at five-member ring TS formed by a cis- and a trans isomer with a 17.7 kcal/mol barrier, can be represented by the three-parameter expression for the 300-5000 K temperature range: k = 5.8 * 10~(25)T~(3.64) exp(-6109/T) cm~3/(molecule·s), which includes the Boltzmann-averaged contribution of the cis isomer. The theoretical value was found to be considerable lower than the available experimental results (which are believed to have suffered from deleterious surface effects).
机译:通过从头算分子轨道(G2M)和过渡态理论计算,研究了HONO双分子分解的动力学和机理。该反应可以通过顺式和反式异构体或两个顺式或两个反式异构体通过四元,五元和六元环过渡态的相互作用而发生,随着环的尺寸增加,反应势垒减小。发现具有13.7 kcal / mol势垒的最低能级路径是由顺-和反-HONO反应形成的六元环TS1产生的。由两个顺式异构体形成的类似的六元环TS(TS2)的势垒高度为15.1 kcal / mol,非常接近于由两个反式异构体形成的5环TS,即15.7 kcal / mol。可以表示出从头算MO结果计算的总速率常数,包括上述三个反应通道以及一个涉及由17.7 kcal / mol势垒的顺式和反式异构体形成的五元环TS的附加通道。通过300-5000 K温度范围的三参数表达式:k = 5.8 * 10〜(25)T〜(3.64)exp(-6109 / T)cm〜3 /(分子·s),其中包括玻尔兹曼异构体的平均贡献。发现该理论值比可用的实验结果低得多(据信该实验结果遭受了有害的表面效应)。

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