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在天体物理条件下,纯 H(2)O 冰中嘧啶经 UV 诱导氧化的非生物合成尿嘧啶的机理。

Mechanism for the abiotic synthesis of uracil via UV-induced oxidation of pyrimidine in pure H(2)O ices under astrophysical conditions.

机构信息

Space Science and Astrobiology Division, NASA Ames Research Center, Moffett Field, California 94035, USASETI Institute, Mountain View, California 94043, USA.

出版信息

J Chem Phys. 2010 Sep 14;133(10):104303. doi: 10.1063/1.3478524.

Abstract

The UV photoirradiation of pyrimidine in pure H(2)O ices has been explored using second-order Moller-Plesset perturbation theory and density functional theory methods, and compared with experimental results. Mechanisms studied include those starting with neutral pyrimidine or cationic pyrimidine radicals, and reacting with OH radical. The ab initio calculations reveal that the formation of some key species, including the nucleobase uracil, is energetically favored over others. The presence of one or several water molecules is necessary in order to abstract a proton which leads to the final products. Formation of many of the photoproducts in UV-irradiated H(2)O:pyrimidine=20:1 ice mixtures was established in a previous experimental study. Among all the products, uracil is predicted by quantum chemical calculations to be the most favored, and has been identified in experimental samples by two independent chromatography techniques. The results of the present study strongly support the scenario in which prebiotic molecules, such as the nucleobase uracil, can be formed under abiotic processes in astrophysically relevant environments, namely in condensed phase on the surface of icy, cold grains before being delivered to the telluric planets, like Earth.

摘要

嘧啶在纯 H(2)O 冰中的紫外光辐照已使用二阶 Moller-Plesset 微扰理论和密度泛函理论方法进行了研究,并与实验结果进行了比较。研究的机制包括从中性嘧啶或阳离子嘧啶自由基开始,并与 OH 自由基反应的机制。从头算计算表明,一些关键物种的形成,包括核碱基尿嘧啶,在能量上比其他物种更有利。为了导致最终产物,需要存在一个或几个水分子来提取质子。在之前的实验研究中,已经在 UV 辐照的 H(2)O:嘧啶=20:1 冰混合物中建立了许多光产物的形成。在所有产物中,量子化学计算预测尿嘧啶是最有利的,并且已经通过两种独立的色谱技术在实验样品中鉴定。本研究的结果强烈支持这样一种情景,即在天体物理相关环境中,无生命过程可以形成前生物分子,例如核碱基尿嘧啶,即在冰冷、寒冷的颗粒表面的凝聚相中形成,然后再被输送到类地行星,如地球。

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