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Alkaline and Alkaline-earth Cyanoacetylides: A Combined Theoretical and Rotational Spectroscopic Investigation

机译:碱性和碱土氰基乙酰化物:理论和旋转光谱的组合研究

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摘要

The metallic cyanoacetylides LiC3N, NaC3N, MgC3N and CaC3N have been investigated by combined spectroscopy measurements and theoretical calculations. The theoretical calculations predict for the four species that the linear isomer with formula MCCCN (M= Li, Na, Mg and Ca) is the most stable one. We used the laser ablation molecular beam Fourier transform microwave spectroscopy to synthesize these species by the reaction of metal vapors, produced by laser ablation, and the 3-bromo-2-propynenitrile (BrCCCN). The pure rotational spectra were observed by Fourier transform microwave spectroscopy in the 2–18 GHz frequency region only for LiCCCN and NaCCCN, while no spectral signatures for MgCCCN and CaCCCN could be detected. Finally, we have searched for LiCCCN and NaCCCN species towards the carbon-rich evolved star IRC + 10216 but only upper limits to their abundances have been obtained.
机译:通过结合光谱测量和理论计算研究了金属氰基乙炔金属LiC3N,NaC3N,MgC3N和CaC3N。理论计算表明,对于这四种物质,分子式为MCCCN(M = Li,Na,Mg和Ca)的线性异构体是最稳定的一种。我们使用激光烧蚀分子束傅里叶变换微波光谱法通过由激光烧蚀产生的金属蒸气与3-溴-2-丙腈(BrCCCN)的反应来合成这些物质。通过傅立叶变换微波光谱法仅在2-18 GHz频率范围内对LiCCCN和NaCCCN观察到了纯旋转光谱,而未检测到MgCCCN和CaCCCN的光谱特征。最后,我们搜索了富含碳的演化恒星IRC + 10216的LiCCCN和NaCCCN物种,但仅获得了其丰度的上限。

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