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A Theoretical Study of Formation Routes and Dimerization of Methanimine and Implications for the Aerosols Formation in the Upper Atmosphere of Titan

机译:甲胺的形成途径和二聚化的理论研究及其对泰坦高层大气气溶胶形成的启示

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Methanimine is a molecule of interest in astrobiology, as it is considered an abiotic precursor of the simplest amino acid glycine. Methanimine has been observed in the interstellar medium and in the upper atmosphere of Titan. In particular, it has been speculated that its polymerization can contribute to the formation of the haze aerosols that surround the massive moon of Saturn. Unfortunately, such a suggestion has not been proved by laboratory experiments. Methanimine is difficult to investigate in laboratory experiments because it is a transient species that must be produced in situ. To assess its potential role in the formation of Titan's aerosol, we have performed a theoretical investigation of possible formation routes and dimerization. The aim of this study is to understand whether formation and dimerization of methanimine and, eventually, its polymerization, are possible under the conditions of the atmosphere of Titan. Results of high-level electronic structure calculations are reported.
机译:甲胺亚胺是天体生物学中的重要分子,因为它被认为是最简单的氨基酸甘氨酸的非生物前体。在星际介质和泰坦高层大气中都观察到了甲胺。特别地,已经推测其聚合可以有助于围绕土星大卫星的雾霾气溶胶的形成。不幸的是,这种建议尚未得到实验室实验的证实。甲胺亚胺很难在实验室实验中进行研究,因为它是一种瞬态物种,必须在原位生产。为了评估其在土卫六气溶胶形成中的潜在作用,我们对可能的形成途径和二聚化进行了理论研究。这项研究的目的是了解在泰坦大气条件下,甲胺的形成和二聚化以及最终聚合的可能性。报告了高级电子结构计算的结果。

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