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首页> 外文期刊>Astronomy and astrophysics >Rotational spectroscopy of malononitrile and its corresponding monoisocyanide isomer, isocyanoacetonitrile ?
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Rotational spectroscopy of malononitrile and its corresponding monoisocyanide isomer, isocyanoacetonitrile ?

机译:丙二腈及其相应的单异氰化物异构体,异氰基乙腈的旋转光谱法

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Context . Nitriles constitute almost 20% of the molecules observed in the interstellar medium, whereas only one dinitrile and one isocyanonitrile compound have been detected up to now. The lack of detections of such compounds may be partially explained by the lack of accurate spectroscopic data on their rotational spectra. Aims . Two small seven-atom dinitriles, malononitrile NCCH_(2)CN and isocyanoacetonitrile NCCH_(2)NC, were chosen as target species for this study. For malononitrile the goal of the study is to systematize all the previous measurements, and to extend the measurements to the sub-millimeter wavelength range. The spectrum of isocyanoacetonitrile has not been studied before. Methods . The rotational spectra of the two molecules were measured in the frequency range 150–660 GHz using the Lille fast-scan spectrometer. The spectroscopic study was supported by high-level theoretical calculations on the structure of these molecules and their harmonic force field. Results . Accurate frequency predictions for malononitrile and isocyanoacetonitrile were calculated on the basis of the analysis of their rotational spectra. The influence of the spin statistics on the intensities of the lines of malononitrile was taken into account. The provided line lists and sets of molecular parameters meet the needs of astrophysical searches for the two molecules.
机译:语境。在星际介质中观察到的分子中,腈几乎占20%,而到目前为止,仅检测到一种二腈和一种异氰腈化合物。缺乏此类化合物的检测可以部分通过其旋转光谱上缺少准确的光谱数据来解释。目的。本研究选择了两个小的七原子二腈,丙二腈NCCH_(2)CN和异氰基乙腈NCCH_(2)NC。对于丙二腈,研究的目的是使所有先前的测量值系统化,并将测量值扩展到亚毫米波长范围。以前没有研究过异氰基乙腈的光谱。方法 。使用里尔快速扫描光谱仪在150–660 GHz的频率范围内测量了这两个分子的旋转光谱。有关这些分子的结构及其谐波力场的高级理论计算为光谱研究提供了支持。结果。丙二腈和异氰基乙腈的准确频率预测是在对它们的旋转光谱进行分析的基础上计算得出的。考虑了自旋统计对丙二腈线强度的影响。提供的线列表和分子参数集满足了对这两种分子进行天体搜索的需要。

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