首页> 外文期刊>The Journal of Chemical Physics >Structural and spectroscopic characterization of methyl isocyanate, methyl cyanate, methyl fulminate, and acetonitrile N-oxide using highly correlated ab initio methods
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Structural and spectroscopic characterization of methyl isocyanate, methyl cyanate, methyl fulminate, and acetonitrile N-oxide using highly correlated ab initio methods

机译:使用高度相关的从头算方法对异氰酸甲酯,氰酸甲酯,富铝酸甲酯和乙腈N-氧化物进行结构和光谱表征

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摘要

Various astrophysical relevant molecules obeying the empirical formula C2H3NO are characterized using explicitly correlated coupled cluster methods (CCSD(T)-F12). Rotational and rovibrational parameters are provided for four isomers: methyl isocyanate (CH3NCO), methyl cyanate (CH3OCN), methyl fulminate (CH3ONC), and acetonitrile N-oxide (CH3CNO). A CH3CON transition state is inspected. A variational procedure is employed to explore the far infrared region because some species present non-rigidity. Second order perturbation theory is used for the determination of anharmonic frequencies, rovibrational constants, and to predict Fermi resonances. Three species, methyl cyanate, methyl fulminate, and CH3CON, show a unique methyl torsion hindered by energy barriers. In methyl isocyanate, the methyl group barrier is so low that the internal top can be considered a free rotor. On the other hand, acetonitrile N-oxide presents a linear skeleton, C-3v symmetry, and free internal rotation. Its equilibrium geometry depends strongly on electron correlation. The remaining isomers present a bend skeleton. Divergences between theoretical rotational constants and previous parameters fitted from observed lines for methyl isocyanate are discussed on the basis of the relevant rovibrational interaction and the quasi-linearity of the molecular skeleton. Published by AIP Publishing.
机译:使用明确相关的耦合簇方法(CCSD(T)-F12)对遵循经验式C2H3NO的各种天体相关分子进行了表征。提供了四个异构体的旋转参数和旋振参数:异氰酸甲酯(CH3NCO),氰酸甲酯(CH3OCN),叶酸甲酯(CH3ONC)和乙腈N-氧化物(CH3CNO)。检查CH3CON过渡状态。由于某些物种存在非刚性,因此采用变分程序来探索远红外区域。二阶微扰理论用于确定非谐频率,振动常数和预测费米共振。三种物种,氰酸甲酯,叶酸甲酯和CH3CON,显示出独特的甲基扭转,受能量垒的阻碍。在异氰酸甲酯中,甲基阻隔非常低,以至于内部顶部可被视为自由转子。另一方面,乙腈N-氧化物具有线性骨架,C-3v对称性和自由内部旋转。它的平衡几何形状在很大程度上取决于电子相关性。其余的异构体呈现弯曲骨架。根据相关的旋转振动相互作用和分子骨架的准线性,讨论了理论旋转常数与从观测到的异氰酸甲酯线拟合的先前参数之间的差异。由AIP Publishing发布。

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