Benchmark Studies on the Isomerization Enthalpies for Interstellar Molecular Species

E. Etim
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Abstract

With the well-established correlation between the relative stabilities of isomers and their interstellar abundances coupled with the prevalence of isomeric species among the interstellar molecular species, isomerization remains a plausible formation route for isomers in the interstellar medium. The present work reports an extensive investigation of the isomerization energies of 246 molecular species from 65 isomeric groups using the Gaussian-4 theory composite method with atoms ranging from 3 to 12. From the results, the high abundances of the most stable isomers coupled with the energy sources in interstellar medium drive the isomerization process even for barriers as high as 67.4 kcal/mol. Specifically, the cyanides and their corresponding isocyanides pairs appear to be effectively synthesized via this process. The following potential interstellar molecules; CNC, NCCN, c-C5H, methylene ketene, methyl Ketene, CH3SCH3, C5O, 1,1-ethanediol, propanoic acid, propan-2-ol, and propanol are identified and discussed. The study further reaffirms the importance of thermodynamics in interstellar formation processes on a larger scale and accounts for the known isomeric species. In all the isomeric groups, isomerization appears to be an effective route for the formation of the less stable isomers (which are probably less abundant) from the most stable ones that are perhaps more abundant.
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星际分子异构化焓的基准研究
由于同分异构体的相对稳定性与其星际丰度之间建立了良好的相关性,再加上星际分子物种中异构体物种的普遍存在,异构化仍然是星际介质中异构体的合理形成途径。本文利用高斯-4理论复合方法对65个同分异构体中246种分子的异构化能进行了广泛的研究,原子范围从3到12。结果表明,最稳定异构体的高丰度与星际介质中的能量源相结合,即使在高达67.4 kcal/mol的势垒上也能驱动异构化过程。具体地说,氰化物及其相应的异氰化物对似乎是通过这种方法有效地合成的。以下是潜在的星际分子;对CNC、NCCN、c-C5H、亚甲基烯酮、甲基烯酮、CH3SCH3、c50、1,1-乙二醇、丙酸、丙二醇和丙醇进行了鉴定和讨论。该研究进一步重申了热力学在更大规模星际形成过程中的重要性,并解释了已知的同分异构体物种。在所有的同分异构体中,异构化似乎是一种有效的途径,从最稳定的异构体(可能更丰富)形成较不稳定的异构体(可能较少)。
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