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Thermal unimolecular reactivity pathways in dehydro-diazines radicals

机译:脱氢二聚胺基团中的热分子反应性途径

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In this work, we investigated the detailed reactivity of dehydro-diazine radicals through unimolecular dissociation pathways. Aromatic six-membered rings with two nitrogens as heteroatoms are classified as diazines, which include pyrimidine 1, pyridazine 2, and pyrazine 3. The C-H bond scission in pyrimidine, pyridazine, and pyrazine leads to three (1a-1c), two (2a and 2b), and one (3a) radical isomers, respectively. Through quantum chemical calculations, reactivity aspects of all the six radical isomers have been investigated by considering different modes of unimolecular reactions. On the basis of the computations at (U)B3LYP/cc-pVTZ, (U)M06-2X/cc-pVTZ, and (U)CCSD(T)/cc-pVTZ//(U)B3LYP/cc-pVTZ levels of theory and analysis, we found out that ring-opening pathways were kinetically more favorable compared with isomerization (1,2-H shift) pathways or C-H bond dissociation leading to biradicals. In all the cases, ring-opening via C-N bond cleavage has a lower energy barrier compared with C-C bond cleavage owing to the stabilizing interaction between radical electron and the nitrogen lone pair. Moreover, the unimolecular decomposition channels can lead to several fragmentation products, which are interesting in the astrochemical context. On the basis of these investigations and also the impact of three centered-five electrons (3c-5e) interactions on the reactivity aspects, we determined the kinetic stability order among the six isomeric dehydrodiazine radicals.
机译:在这项工作中,我们研究了脱氢二嗪自由基通过单分子解离途径的详细反应性。以两个氮原子为杂原子的芳香族六元环被分类为二嗪,包括嘧啶1、哒嗪2和哒嗪3。嘧啶、哒嗪和吡嗪中的C-H键断裂分别导致三个(1a-1c)、两个(2a和2b)和一个(3a)自由基异构体。通过量子化学计算,通过考虑不同的单分子反应模式,研究了所有六种自由基异构体的反应性。在(U)B3LYP/cc-pVTZ、(U)M06-2X/cc-pVTZ和(U)CCSD(T)/cc-pVTZ//(U)B3LYP/cc-pVTZ理论和分析水平的计算基础上,我们发现开环途径在动力学上比异构化(1,2-H位移)途径或导致双自由基的C-H键解离更有利。在所有情况下,由于自由基电子和氮孤对之间的稳定相互作用,通过C-N键断裂开环比通过C-C键断裂具有更低的势垒。此外,单分子分解通道可以导致几种碎裂产物,这在天体化学背景下是有趣的。基于这些研究以及三中心五电子(3c-5e)相互作用对反应性的影响,我们确定了六个异构脱氢二嗪自由基之间的动力学稳定性顺序。

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