首页> 外文期刊>The Astrophysical journal >ON THE FORMATION OF SILACYCLOPROPENYLIDENE (c-SiC2H2) AND ITS ROLE IN THE ORGANOSILICON CHEMISTRY IN THE INTERSTELLAR MEDIUM
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ON THE FORMATION OF SILACYCLOPROPENYLIDENE (c-SiC2H2) AND ITS ROLE IN THE ORGANOSILICON CHEMISTRY IN THE INTERSTELLAR MEDIUM

机译:星际介质中有机硅化学中硅环戊二烯(c-SiC2H2)的形成及其作用

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Organosilicon species such as silicon carbide and silicon dicarbide are considered as key molecular building blocks in the chemical evolution of the interstellar medium and are associated with the formation of silicon-carbide dust grains in the outflow of circumstellar envelopes of carbon-rich asymptotic giant branch (AGB) stars. However, the formation mechanisms of even the simplest silicon-bearing organic molecules have remained elusive for decades. Here, we demonstrate in crossed molecular beam experiments combined with ab initio calculations that the silacyclopropenylidene molecule (c-SiC2H2) can be synthesized in the gas phase under single-collision conditions via the reaction of the silylidyne radical (SiH) with acetylene (C2H2). This system denotes the simplest representative of a previously overlooked reaction class, in which the formation of an organosilicon molecule can be initiated via barrierless and exoergic reactions of silylidyne radicals with hydrocarbon molecules in circumstellar envelopes of evolved carbon stars such as IRC+10216. Since organosilicon molecules like silacyclopropenylidene can be eventually photolyzed to carbon-silicon clusters such as silicon dicarbide (c-SiC2), silacyclopropenylidene might even represent the missing link between simple molecular precursors and silicon-carbide-rich interstellar grains.
机译:诸如碳化硅和二碳化硅之类的有机硅物质被认为是星际介质化学演化中的关键分子构建基块,并且与富含碳的渐近巨型分支的星际包膜流出时碳化硅尘埃颗粒的形成有关( AGB)星。但是,即使是最简单的含硅有机分子的形成机制也已经几十年了。在这里,我们在交叉分子束实验与从头算的结合中证明了,甲硅烷基炔基(SiH)与乙炔(C2H2)的反应可在单碰撞条件下在气相中合成硅环丙烯基分子(c-SiC2H2) 。该系统代表了先前被忽视的反应类别的最简单代表,其中有机硅分子的形成可以通过甲硅烷基自由基与碳分子(例如IRC + 10216)的星际包膜中的烃分子的无阻和放热反应来引发。由于诸如硅环丙烯基的有机硅分子最终可以被光解为诸如二碳化硅(c-SiC2)的碳硅簇,因此硅环丙烯基甚至可能代表了简单分子前驱物与富含碳化硅的星际晶粒之间的缺失环节。

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