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Azuleze-to-naphthalene rearrangment: The Car-Parinello metadynamics method explores various mechanisms

机译:腈至萘的重排:Car-Parrinello元动力学方法探讨了多种机理

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摘要

We studied the thermal intramolecular and radical rearrangement of azulene to naphthalene by employing a novel metadynamics method based on Car-Parrinello molecular dynamics. We demonstrate that relatively short simulations can provide us with several possible reaction mechanisms for the rearrangement. We show that different choices of the collective coordinates can steer the reaction along different pathways, thus offering the possibility of choosing the most probable mechanism. We consider herein three intramolecular mechanisms and two radical path-ways. We found the norcaradiene pathway to be the preferable intramolecular mechanism, whereas the spiran mechanism is the favored radical route. We obtained high activation energies for all the intramolecular pathways (81.5-98.6 kcal mol(-1)), whereas the radical routes have activation energies of 24-39 kcal mol(-1). The calculations have also resulted in elementary steps and intermediates not yet considered. A few attractive features of the metadynamics method in studying chemical reactions are pointed out.
机译:我们通过采用一种基于Car-Parrinello分子动力学的新的动力学方法,研究了氮杂对萘的热分子内和自由基重排。我们证明相对较短的仿真可以为我们提供几种可能的重排反应机制。我们表明,集体坐标的不同选择可以使反应沿着不同的路径进行,从而提供了选择最可能的机理的可能性。我们在这里考虑三种分子内机制和两种自由基途径。我们发现降冰片烯途径是优选的分子内机制,而螺喃机制是优选的自由基途径。我们获得了所有分子内途径的高活化能(81.5-98.6 kcal mol(-1)),而自由基途径的活化能为24-39 kcal mol(-1)。计算还导致尚未考虑基本步骤和中间步骤。指出了动力学研究化学反应的一些吸引人的特征。

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