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首页> 外文期刊>Astronomy and astrophysics >Exploring molecular complexity with ALMA (EMoCA): Simulations of branched carbon-chain chemistry in Sgr B2(N)
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Exploring molecular complexity with ALMA (EMoCA): Simulations of branched carbon-chain chemistry in Sgr B2(N)

机译:用ALMA(EMoCA)探索分子复杂性:Sgr B2(N)中支链碳链化学的模拟

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Context. Using millimeter wavelength data from the Atacama Large Millimeter/submillimeter Array (ALMA), the EMoCA spectral line survey recently revealed the presence of both the straight-chain (normal) and branched (iso) forms of propyl cyanide (C _(3) H _(7) CN) toward the Galactic Center star-forming source Sgr B2(N2). This was the first interstellar detection of a branched aliphatic molecule. Aims. Through computational methods, we seek to explain the observed i : n ratio for propyl cyanide, and to predict the abundances of the four different forms of the homologous nitrile, butyl cyanide (C _(4) H _(9) CN). We also investigate whether other molecules will show a similar degree of branching, by modeling the chemistry of alkanes up to pentane (C _(5) H _(12) ). Methods. We use the coupled three-phase chemical kinetics model, MAGICKAL, to simulate the chemistry of the hot-core source Sgr B2(N2), using an updated chemical network that includes grain-surface/ice-mantle formation routes for branched nitriles and alkanes. The network explicitly considers radical species with an unpaired electron on either the primary or secondary carbon in a chain. We also include mechanisms for the addition of the cyanide radical, CN, to hydrocarbons with multiple bonds between carbon atoms, using activation energy barriers from the literature. We use the EMoCA survey data to search for the straight-chain form of butyl cyanide toward Sgr B2(N2). Results. The observed i : n ratio for propyl cyanide is reproduced by the models, with intermediate to fast warm-up timescales providing the most accurate result. Butyl cyanide is predicted to show similar abundances to propyl cyanide, and to exhibit strong branching, with the sec form clearly dominant over all others. Normal and iso-butyl cyanide are expected to have similar abundances to each other, while the tert form is significantly less abundant. The addition of CN to acetylene and ethene is found to be important to the production of vinyl, ethyl, propyl, and butyl cyanide. The alkanes also show significant branching. We report a non-detection of n- C _(4) H _(9) CN toward Sgr B2(N2), with an abundance at least 1.7 times lower than that of n- C _(3) H _(7) CN. This value is within the range predicted by the chemical models. Conclusions. The models indicate that the degree of branching rises with increasing molecular size. The efficiency of CN addition to unsaturated hydrocarbons boosts the abundances of nitriles in the model, and enhances the ratio of straight-to-branched molecule production. Other types of molecule may be less abundant, but show an even greater degree of branching. The predicted abundance of, in particular, s -C _(4) H _(9) CN, which at its peak is comparable to that of propyl cyanide, makes it a good candidate for future detection toward Sgr B2(N2).
机译:上下文。使用来自阿塔卡马大毫米波/亚毫米波阵列(ALMA)的毫米波波长数据,EMocA光谱线调查最近揭示了直链(正态)和支链(异构)形式的丙基氰化物(C _(3)H _(7)CN)朝向银河系中心的恒星形成源Sgr B2(N2)。这是对脂肪族支链分子的首次星际检测。目的通过计算方法,我们试图解释所观察到的丙烯腈的i:n比值,并预测同种腈丁腈(C _(4)H _(9)CN)四种不同形式的丰度。我们还通过对烷烃至戊烷(C _(5)H _(12))的化学建模来研究其他分子是否会显示相似的支化度。方法。我们使用耦合的三相化学动力学模型MAGICKAL,使用更新的化学网络(包括支链腈和烷烃的颗粒表面/冰幔形成途径)来模拟热核源Sgr B2(N2)的化学反应。该网络明确考虑了在链的伯碳或仲碳上具有不成对电子的自由基物种。我们还包括使用文献中的活化能垒将氰化物基团CN加到碳原子之间具有多个键的烃中的机制。我们使用EMoCA调查数据搜索针对Sgr B2(N2)的丁基氰化物的直链形式。结果。该模型再现了所观察到的丙腈的i:n比,其中中等至快速的预热时间范围可提供最准确的结果。预计丁基氰化物会显示出与丙基氰类似的丰度,并表现出强支化作用,第二种形式显然比其他所有形式都占优势。预计正氰和异丁基氰的丰度彼此相似,而叔型的丰度则明显较低。发现将CN添加到乙炔和乙烯中对于生产乙烯基,乙基,丙基和丁基氰化物很重要。烷烃也显示出明显的支化。我们报告未检测到朝向Sgr B2(N2)的n C _(4)H _(9)CN,其丰度比n- C _(3)H _(7)低至少1.7倍CN该值在化学模型预测的范围内。结论。该模型表明支化程度随分子大小的增加而增加。 CN添加到不饱和烃中的效率提高了模型中腈的含量,并提高了直链与支链分子的生成比例。其他类型的分子可能数量较少,但分支程度更高。尤其是s -C _(4)H _(9)CN的预测丰度(其峰值与氰化丙酯相当)使其成为将来针对Sgr B2(N2)进行检测的良好候选者。

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