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首页> 外文期刊>The Astrophysical journal >N- AND O-HETEROCYCLES PRODUCED FROM THE IRRADIATION OF BENZENE AND NAPHTHALENE IN H2O/NH3-CONTAINING ICES
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N- AND O-HETEROCYCLES PRODUCED FROM THE IRRADIATION OF BENZENE AND NAPHTHALENE IN H2O/NH3-CONTAINING ICES

机译:含H2O / NH3的冰中苯和萘的辐照产生的N和O杂环

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Aromatic heterocyclic molecules are an important class of molecules of astrophysical and biological significance that include pyridine, pyrimidine, and their derivatives. Such compounds are believed to exist in interstellar and circumstellar environments, though they have never been observed in the gas phase. Regardless of their presence in the gas phase in space, numerous heterocycles have been reported in carbonaceous meteorites, which indicates that they are formed under astrophysical conditions. The experimental work described here shows that N- and O-heterocyclic molecules can form from the ultraviolet (UV) irradiation of the homocyclic aromatic molecules benzene (C6H6) or naphthalene (C10H8) mixed in ices containing H2O and NH3. This represents an alternative way to generate aromatic heterocycles to those considered before and may have important implications for astrochemistry and astrobiology.
机译:芳香族杂环分子是一类重要的具有天体和生物学意义的分子,包括吡啶,嘧啶及其衍生物。据信这类化合物存在于星际和星际环境中,尽管从未在气相中观察到过。不论它们存在于太空中的气相中如何,已在碳质陨石中报告了许多杂环,这表明它们是在天体物理条件下形成的。此处描述的实验工作表明,在含有H2O和NH3的冰中混合的同环芳族分子苯(C6H6)或萘(C10H8)可以通过紫外线(UV)照射形成N和O杂环分子。这是产生芳族杂环的一种替代方法,是以前考虑的那些,并且可能对天化学和天体生物学产生重要影响。

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