首页> 外文期刊>The Journal of Chemical Physics >STATISTICAL EFFECTS IN THE THERMAL DEAZETIZATION REACTION OF 2,3-DIAZABICYCLO(2.2.1)HEPT-2-ENE
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STATISTICAL EFFECTS IN THE THERMAL DEAZETIZATION REACTION OF 2,3-DIAZABICYCLO(2.2.1)HEPT-2-ENE

机译:2,3-二氮杂双环(2.2.1)HEPT-2-ENE的热脱氮反应中的统计作用

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The deazetization reaction of 2,3-diazabicyclo(2.2.1)hept-2-ene-exo, exo-5,6-d(2) is investigated using Monte Carlo classical variational transition-state theory,implemented by the efficient microcanonical sampling procedure. Comparison is made with the results of trajectory calculations performed on the same global potential-energy surface. The microcanonical reaction rates have been determined for both reaction channels, i.e., the stepwise and concerted cleavage of the two C-N bonds of the reactant. The results demonstrate that the thermal decomposition of 2,3-diazabicyclo (2.2.1)hept-2-ene-exo, exo-5,6-d(2) is well described by statistical theories that assume equal weighting for all energetically accessible phase-space points. It is found that the rate coefficients of the statistical calculations are close upper bounds of the rates determined in trajectory calculations. Previously reported classical trajectory simulations have shown that the distribution of internal energy in the reactant configuration, at the transition state and beyond is very nearly microcanonical for the range of excitation energies analyzed (60-175 kcal/mol). Under such conditions, the agreement obtained between the present statistically computed rate coefficients and those extracted from the trajectory results is not surprising. It is suggested that nonstatistical post-transition-state events account for the nonunity ratio of the exo/endo reaction products observed experimentally. These events are not considered in the present statistical theories of the reaction rates. (C) 1995 American Institute of Physics. [References: 20]
机译:使用有效的微经典采样实现的蒙特卡洛经典变分过渡态理论研究了2,3-二氮杂双环(2.2.1)庚-2-烯-exo,exo-5,6-d(2)的脱氮反应程序。将在相同的全局势能表面上执行的轨迹计算结果进行比较。已经确定了两个反应通道的微规范反应速率,即反应物的两个C-N键的逐步和一致裂解。结果表明,统计理论很好地描述了2,3-二氮杂双环(2.2.1)庚-2-烯-exo,exo-5,6-d(2)的热分解,假设所有能量可及的均等权重相空间点。发现统计计算的速率系数是在轨迹计算中确定的速率的接近上限。先前报道的经典轨迹模拟表明,对于所分析的激发能范围(60-175 kcal / mol),在过渡态及以后的反应构型中,内部能量的分布几乎是微规范的。在这种情况下,当前统计计算的速率系数与从轨迹结果中提取的速率系数之间的一致性并不令人惊讶。建议非统计的过渡后状态事件解释了实验观察到的外/内反应产物的不统一比率。在目前的反应速率统计理论中没有考虑这些事件。 (C)1995年美国物理研究所。 [参考:20]

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