论文标题

最先进的量子化学计算在星体化学中的作用:乙胺胺的形成路线和光谱作为范式的情况

The Role of State-of-the-Art Quantum-Chemical Calculations in Astrochemistry: Formation Route and Spectroscopy of Ethanimine as a Paradigmatic Case

论文作者

Baiano, Carmen, Lupi, Jacopo, Tasinato, Nicola, Puzzarini, Cristina, Barone, Vincenzo

论文摘要

乙酰胺的气相形成和光谱特征已被重新评估为一种范式案例,说明了天文学领域中最先进的量子化学方法(QC)方法的准确性。根据我们的计算,Amidogen,NH和Ethyl之间的反应,C $ _2 $ H $ _5 $,激进分子非常快,接近气体运动限制。尽管星际培养基的典型条件下的主要反应通道会导致甲烷胺和甲基自由基,但乙酰亚胺的两个E,z立体异构体的预测量约为10%。最新的QC和动力学模型导致[E-CH $ _3 $ CHNH]/[Z-CH $ _3 $ CHNH]的比率。 1.4,略高于以前的计算,但仍远非由天文观测确定的值(约3)。乙烷亚胺的E和Z异构体的分子结构,能量和光谱特性的准确计算表征结合了最高300 GHz的毫米波测量值,可以预测两种异构体的旋转频谱,从而向最高500 GHz的旋转频谱,从而向新的天文学观察开放。

The gas-phase formation and spectroscopic characteristics of ethanimine have been re-investigated as a paradigmatic case illustrating the accuracy of state-of-the-art quantum-chemical (QC) methodologies in the field of astrochemistry. According to our computations, the reaction between the amidogen, NH, and ethyl, C$_2$H$_5$, radicals is very fast, close to the gas-kinetics limit. Although the main reaction channel under conditions typical of the interstellar medium leads to methanimine and the methyl radical, the predicted amount of the two E,Z stereoisomers of ethanimine is around 10%. State-of-the-art QC and kinetic models lead to a [E-CH$_3$CHNH]/[Z-CH$_3$CHNH] ratio of ca. 1.4, slightly higher than the previous computations, but still far from the value determined from astronomical observations (ca. 3). An accurate computational characterization of the molecular structure, energetics, and spectroscopic properties of the E and Z isomers of ethanimine combined with millimeter-wave measurements up to 300 GHz, allows for predicting the rotational spectrum of both isomers up to 500 GHz, thus opening the way toward new astronomical observations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源