首页> 外文期刊>The Astrophysical journal >RADICAL-MOLECULE REACTION C_3H + H_2O ON AMORPHOUS WATER ICE: A PROMISING ROUTE FOR INTERSTELLAR PROPYNAL
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RADICAL-MOLECULE REACTION C_3H + H_2O ON AMORPHOUS WATER ICE: A PROMISING ROUTE FOR INTERSTELLAR PROPYNAL

机译:非晶态冰上的自由基分子反应C_3H + H_2O:星际间质的可能路线

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摘要

Intriguing propynal (HCCCHO) has been attracting chemist's attention since 1955. However, to date, no satisfying conclusion concerning its formation mechanism in the interstellar medium (ISM) has been reached, although a variety of gas-reaction models, including ion-molecule, radical-molecule, and molecule-molecule, have been postulated. In this paper, we consider for the first time the gas-grain interaction model that involves heterogeneous reaction at the surface of dust grain or in the icy mantles to account for the propynal's formation. Based on the detailed density functional theory (DFT) and Gaussian-3 potential energy surface studies, we found that although the gaseous process C_3H + H_2O → propynal + H must surmount a considerable entrance barrier (around 10 kcal mol~(-1)), amorphous water ice can significantly catalyze the propynal's formation to be barrierless. So, this model should be a more reasonable one for propynal's formation in the low-temperature interstellar space. This result may also represent one rare case of the water-catalyzed reaction associated with a molecular radical in space. Future experimental studies are greatly desired to probe such interesting processes.
机译:自1955年以来,令人着迷的丙炔(HCCCHO)一直引起化学家的关注。但是,迄今为止,尽管在包括离子分子在内的多种气体反应模型中,仍未获得令人满意的关于星际介质(ISM)中形成机理的结论。假定自由基分子和分子分子。在本文中,我们首次考虑了气-尘相互作用模型,该模型涉及尘粒表面或冰幔中的异质反应,以解释性腺的形成。根据详细的密度泛函理论(DFT)和高斯3势能面研究,我们发现尽管气态过程C_3H + H_2O→丙醛+ H必须克服相当大的进入势垒(约10 kcal mol〜(-1)) ,无定形的水冰可以显着催化无形成性的乳突形成。因此,该模型对于低温星际空间中的股骨的形成应该是一个更合理的模型。该结果也可能代表了与空间分子自由基相关的水催化反应的一种罕见情况。迫切需要未来的实验研究来探索这种有趣的过程。

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