Laboratoire de Chimie Théorique (LETMEX), Université Pierre et Marie Curie, Paris VI, UMR-CNRS 7616, 4, Place Jussieu, 75252 Paris cedex, France.
Phys Chem Chem Phys. 2010 Apr 28;12(16):4165-71. doi: 10.1039/b924574j. Epub 2010 Mar 16.
Finding complex organic molecules in the interstellar medium (ISM) is a major concern for understanding the possible role of interstellar organic chemistry in the synthesis of prebiotic species. The present interdisciplinary report is a prospective study aimed at helping detection of heteroaromatic compounds or at least of some of their isomers in the ISM. The thermodynamic stabilities of the C(4)H(5)N, C(4)H(4)O, C(4)H(4)S families were calculated using density functional theory (DFT). It was found that pyrrole, furan and thiophene are unambiguously the most stable isomers at the 10-50 K temperatures of the ISM. Several of the less stable isomers were synthesized and flash vacuum thermolysis experiments were performed on these species. Although the detection of pyrrole in the pyrolysis of many compounds has been reported in the literature, we observed that none of its isomers led to pyrrole in these conditions, which suggests that other formation routes are to be considered. On the other hand, these three aromatic compounds present a very high stability, few % been decomposed at 1500 K by flash vacuum thermolysis; these experiments also show a great stability of crotonitrile that is the most stable compound that can be formed in these conditions. The rotational constants, dipole moments and IR frequencies of the low-lying isomers are given to encourage laboratory experiments on these prototype molecules.
在星际介质(ISM)中发现复杂的有机分子是理解星际有机化学在前生物合成中的可能作用的主要关注点。本跨学科报告是一项前瞻性研究,旨在帮助检测异质芳烃化合物,或至少检测 ISM 中的一些异构体。使用密度泛函理论(DFT)计算了 C(4)H(5)N、C(4)H(4)O、C(4)H(4)S 族的热力学稳定性。结果发现,在 ISM 的 10-50 K 温度下,吡咯、呋喃和噻吩是最稳定的异构体。合成了几种不太稳定的异构体,并对这些物质进行了闪光真空热解实验。尽管文献中已经报道了许多化合物在热解中检测到吡咯,但我们观察到在这些条件下,其任何异构体都不会导致吡咯的生成,这表明需要考虑其他形成途径。另一方面,这三种芳香族化合物具有非常高的稳定性,在 1500 K 下通过闪光真空热解分解的不到 1%;这些实验还表明,丙烯腈非常稳定,它是在这些条件下可以形成的最稳定的化合物。给出了低能异构体的转动常数、偶极矩和红外频率,以鼓励对这些原型分子进行实验室实验。