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Tholinomics--Chemical Analysis of Nitrogen-Rich Polymers

机译:热力学-富氮聚合物的化学分析

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The polymeric composition of Titan's tholins-laboratory analogues of Titan's aerosols-is elucidated using high-resolution mass spectrometry. This complex organic matter is produced by plasma discharge in a gaseous nitrogen-methane mixture and analyzed with a hybrid linear trap/orbitrap mass-spectrometer. The highly structured mass spectra are treated with tools developed for petroleomics (Kendrick and van Krevelen diagrams), with original adaptations for nitrogen-rich compounds. Our goal is to find the best chemical basis set to describe the compositional space that these polymers occupy, to shed light onto the chemical structure of tholins. We succeeded in assigning the molecules identified in the mass spectra of tholins to a small number of regularly distributed X-(CH_(2))_(m)(HCN)_(n) families, where the balanced copolymer (m velence n) is determined to play a central role. Within each family, the polymer lengths n and m present Poisson-type distributions. We also identify the smallest species of a subset of families as linear and cyclic amino nitrile compounds of great astrobiological interest: biguanide, guanidin, acetamidine, aminoacetonitrile, and methylimidazole.
机译:泰坦的tholins的聚合物组成-实验室的类似泰坦的气溶胶-使用高分辨率质谱进行了阐明。这种复杂的有机物是通过在气态氮-甲烷混合物中进行等离子体放电产生的,并使用混合线性阱/轨道阱质谱仪进行分析。高度结构化的质谱图使用为石油化学开发的工具(Kendrick和van Krevelen图)进行处理,并对富氮化合物进行了原始改编。我们的目标是找到描述这些聚合物所占据的组成空间的最佳化学基础,以阐明索林的化学结构。我们成功地将在Tholins质谱图中鉴定的分子分配给少量规则分布的X-(CH_(2))_(m)(HCN)_(n)族,其中平衡共聚物(m velence n)决心发挥核心作用。在每个族中,聚合物长度n和m呈现泊松型分布。我们还确定了一个子集的最小种类,它们是具有重大生物学意义的线性和环状氨基腈化合物:双胍,胍,乙,氨基乙腈和甲基咪唑。

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