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星际/彗星冰实验室模拟中的复杂有机物。

Complex organics in laboratory simulations of interstellar/cometary ices.

作者信息

Bernstein M P, Allamandola L J, Sandford S A

机构信息

NASA-Ames Research Center, Moffett Field, CA 94035-1000, USA.

出版信息

Adv Space Res. 1997;19(7):991-8. doi: 10.1016/s0273-1177(97)00340-2.

Abstract

We present the photochemical and thermal evolution of both non-polar and polar ices representative of interstellar and pre-cometary grains. Ultraviolet photolysis of the non-polar ices comprised of O2, N2, and CO produces CO2, N2O, O3, CO3, HCO, H2CO, and possibly NO and NO2. When polar ice analogs (comprised of H2O, CH3OH, CO, and NH3) are exposed to UV radiation, simple molecules are formed including: H2, H2CO, CO2, CO, CH4, and HCO (the formyl radical). Warming produces moderately complex species such as CH3CH2OH (ethanol), HC(=O)NH2 (formamide), CH3C(=O)NH2 (acetamide), R-CN and/or R-NC (nitriles and/or isonitriles). Several of these are already known to be in the interstellar medium, and their presence indicates the importance of grain processing. Infrared spectroscopy, 1H and 13C nuclear magnetic resonance (NMR) spectroscopy, and gas chromatography-mass spectrometry demonstrate that after warming to room temperature what remains is an organic residue composed primarily of hexamethylenetetramine (HMT, C6H12N4) and other complex organics including the amides above and polyoxymethylene (POM) and its derivatives. The formation of these organic species from simple starting mixtures under conditions germane to astrochemistry may have important implications for the organic chemistry of interstellar ice grains, comets and the origins of life.

摘要

我们展示了代表星际和彗星前颗粒的非极性和极性冰的光化学和热演化过程。由O2、N2和CO组成的非极性冰经紫外线光解会产生CO2、N2O、O3、CO3、HCO、H2CO,可能还有NO和NO2。当极性冰类似物(由H2O、CH3OH、CO和NH3组成)暴露于紫外线辐射时,会形成简单分子,包括:H2、H2CO、CO2、CO、CH4和HCO(甲酰基自由基)。升温会产生中等复杂的物种,如CH3CH2OH(乙醇)、HC(=O)NH2(甲酰胺)、CH3C(=O)NH2(乙酰胺)、R-CN和/或R-NC(腈和/或异腈)。其中几种物质已知存在于星际介质中,它们的存在表明了颗粒加工的重要性。红外光谱、1H和13C核磁共振(NMR)光谱以及气相色谱-质谱分析表明,升温至室温后剩余的是一种有机残留物,主要由六亚甲基四胺(HMT,C6H12N4)和其他复杂有机物组成,包括上述酰胺以及聚甲醛(POM)及其衍生物。在与天体化学相关的条件下,由简单起始混合物形成这些有机物种可能对星际冰粒、彗星的有机化学以及生命起源具有重要意义。

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