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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Theoretical Investigation of Cheletroptic Decarbonylation Reactions
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Theoretical Investigation of Cheletroptic Decarbonylation Reactions

机译:趋向性脱羰反应的理论研究

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In this study,B3LYP is used to calculate the decarbonylation reactions of the bicyclo-[2.2.1]hepta-2,5-dien-7-one (7-norbornadienone,1) and its related extended fused aromatic analogues 2-5.On the basis of our results,all of the reactions tend to proceed synchronously to expel CO,forming the corresponding aromatic hydrocarbons.It is found that the more exothermic the reaction is,the less of a reaction barrier it needs to overcome.Moreover,upon a decrease of the reaction exothermicity,the structure of the transition state is farther away from the reactant,and the reaction barrier increases.The results agree well with the Hammond postulate as well as the Bell-Evans-Polanyi principle.Studies predict an activation energy of 27.83 kcal/mol for 5,so that the production of pentacene from compound 5 might proceed at elevated temperatures such as 400 K.
机译:在这项研究中,B3LYP用于计算双环[[2.2.1]庚2,5- dien-7-one(7-降冰片二烯酮,1)及其相关的扩展稠合芳香族类似物2-5的脱羰反应。根据我们的结果,所有反应趋向于同步进行,以排出CO,形成相应的芳烃。发现反应放热越多,需要克服的反应障碍就越少。反应放热性降低,过渡态的结构离反应物更远,反应势垒增加。结果与哈蒙德假设以及贝尔-埃文斯-波兰尼原理相吻合。研究预测了活化能5的摩尔比为27.83 kcal / mol,因此由化合物5并五苯的生产可能会在高温(例如400 K)下进行。

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