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首页> 外文期刊>The Journal of Chemical Physics >Trapping and desorption of complex organic molecules in water at 20 K
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Trapping and desorption of complex organic molecules in water at 20 K

机译:20 K下水中复杂有机分子的捕集与解吸

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摘要

The formation, chemical, and thermal processing of complex organic molecules (COMs) is currently a topic of much interest in interstellar chemistry. The isomers glycolaldehyde, methyl formate, and acetic acid are particularly important because of their role as pre-biotic species. It is becoming increasingly clear that many COMs are formed within interstellar ices which are dominated by water. Hence, the interaction of these species with water ice is crucially important in dictating their behaviour. Here, we present the first detailed comparative study of the adsorption and thermal processing of glycolaldehyde, methyl formate, and acetic acid adsorbed on and in water ices at astrophysically relevant temperatures (20 K). We show that the functional group of the isomer dictates the strength of interaction with water ice, and hence the resulting desorption and trapping behaviour. Furthermore, the strength of this interaction directly affects the crystallization of water, which in turn affects the desorption behaviour. Our detailed coverage and composition dependent data allow us to categorize the desorption behaviour of the three isomers on the basis of the strength of intermolecular and intramolecular interactions, as well as the natural sublimation temperature of the molecule. This categorization is extended to other C, H, and O containing molecules in order to predict and describe the desorption behaviour of COMs from interstellar ices. (C) 2015 AIP Publishing LLC.
机译:复杂有机分子(COM)的形成,化学和热处理是星际化学中非常感兴趣的话题。异构体乙醇醛,甲酸甲酯和乙酸由于其作为益生元的作用而特别重要。越来越清楚的是,许多COM是在以水为主导的星际冰中形成的。因此,这些物种与水冰的相互作用对于决定其行为至关重要。在这里,我们提出了在天体相关温度(20 K)下水冰上和水中吸附的乙醇醛,甲酸甲酯和乙酸的吸附和热加工的第一个详细的比较研究。我们表明,异构体的官能团决定了与水冰相互作用的强度,并因此导致了脱附和捕集的行为。此外,这种相互作用的强度直接影响水的结晶,进而影响解吸性能。我们详尽的覆盖率和成分相关数据使我们能够根据分子间和分子内相互作用的强度以及分子的自然升华温度对三种异构体的解吸行为进行分类。此分类扩展到其他含C,H和O的分子,以便预测和描述COM从星际冰中解吸的行为。 (C)2015 AIP Publishing LLC。

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