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首页> 外文期刊>The Journal of Chemical Physics >Spectroscopic investigation of [Al,N,C,O] refractory molecules
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Spectroscopic investigation of [Al,N,C,O] refractory molecules

机译:[Al,N,C,O]耐火分子的光谱研究

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As of yet, unexamined aluminum bearing molecules may help elucidate aluminum chemistry and associated refractory atom reactions in the interstellar medium. The flexibility of modern quantum chemistry in the construction and analysis of novel molecules makes it perfectly suited to analyze molecules of astrochemical significance. In this paper, high level ab initio electronic structure calculations using the coupled cluster CCSD(T) and explicitly correlated coupled cluster CCSD(T)-F12 methods with large basis sets extrapolated to the complete basis set limit have been performed on the various [Al,N,C,O] isomers. The anharmonic rotational and vibrational spectroscopic parameters for all isomers are produced with these same levels of theory via quartic force fields and vibrational perturbation theory in order to aid in their potential laboratory or even astrophysical identification. The most stable isomer is determined here to be the aluminum isocyanate radical with linear equilibrium geometry AlNCO (X-1 Sigma(+)). The NCO antisymmetric stretch of AlNCO has an intensity of 1500 km/mol, which should greatly aid in its infrared detection in the region around 2305 cm(-1). Additionally, the AlOCN isomer is relatively low lying, possesses a 5.12 D dipole moment, and has a notable kinetic stability, making it a viable candidate for astronomical observation. All isomers are characterized by small frequencies, which indicates that these are floppy molecules. Isomers with a terminal aluminum atom are especially floppy, with bending modes less than 100 cm(-1). Published under license by AIP Publishing.
机译:尚可,未审美的铝轴承分子可帮助阐明铝化学和相关的铝化学和相关的难道原子反应。现代量子化学在新型分子施工和分析中的灵活性使其完全适合分析星体化学意义的分子。在本文中,在各种[Al上,使用耦合簇CCSD(T)和明确相关的耦合耦合CCSD(T)-F12方法的高级AB Initio电子结构计算已经对各种[al ,n,c,o]异构体。所有异构体的Anharmonic旋转和振动光谱参数通过四分之一力场和振动扰动理论具有这些相同的理论,以帮助其潜在的实验室或甚至天体物理鉴定。此处确定最稳定的异构体是用线性平衡几何alnco(x-1 sigma(+))的铝异氰酸铝自由基。 alnco的NCO反对称拉伸强度为1500 km / mol,这应该极大地有助于其在约2305cm(-1)的区域中的红外检测。另外,AloCN异构体躺着相对较低,具有5.12d偶极矩,具有值得注意的动力学稳定性,使其成为天文观察的可行候选者。所有异构体都是小频率的特征,表明这些是软盘分子。具有末端铝原子的异构体尤其是软盘,弯曲模式小于100厘米(-1)。通过AIP发布在许可证下发布。

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