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Low-temperature formation of pyridine and (iso)quinoline via neutral–neutral reactions

  • Zhenghai Yang
  • , Chao He
  • , Shane J. Goettl
  • , Alexander M. Mebel*
  • , Paulo F.G. Velloso
  • , Márcio O. Alves
  • , Breno R.L. Galvão*
  • , Jean Christophe Loison*
  • , Kevin M. Hickson
  • , Michel Dobrijevic
  • , Xiaohu Li*
  • , Ralf I. Kaiser*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Aromatic molecules represent fundamental building blocks in prebiotic chemistry and are contemplated as vital precursors to DNA and RNA nitrogen bases. However, despite the identification of some 300 molecules in extraterrestrial environments, the pathways to pyridine (C5H5N), pyridinyl (C5H4N·) and (iso)quinoline (C9H7N)—the simplest representative mono- and bicyclic aromatic molecules carrying nitrogen—are elusive. Here we afford compelling evidence on the gas-phase formation of methylene amidogen (H2CN·) and cyanomethyl (H2CCN·) radicals via molecular beam studies and electronic structure calculations. The modelling of the chemistries of the Taurus molecular cloud (TMC-1) and Titan’s atmosphere contemplates a complex chain of reactions synthesizing pyridine, pyridinyl and (iso)quinoline from H2CN· and H2CCN· at levels of up to 75%. This study affords unique entry points to precursors of DNA and RNA nitrogen bases in hydrocarbon-rich extraterrestrial environments thus changing the way we think about the origin of prebiotic molecules in our Galaxy.

源语言英语
页(从-至)856-864
页数9
期刊Nature Astronomy
8
7
DOI
出版状态已出版 - 7月 2024
已对外发布

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