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A theoretical study on CH2N2 isomers: structure and energetics

机译:CH2 N2 异构体的理论研究:结构和能量学

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Five CH2N2 isomers, namely cyanamide, carbodiimide, diazomethane, isocyanamide and nitrilimine, have been investigated at a high level of accuracy. The singles and doubles coupled-cluster method including a perturbational correction for connected triple excitations, CCSD(T), in conjunction with correlation-consistent basis sets ranging in size from triple to quintuple zeta have been employed. Extrapolation to the complete basis set limit has been used with treatments of core-valence correlation effects in order to accurately predict structures, relative energies as well as N–H and C–H bond dissociation energies. The latter required to also investigate the HNNC radical with the same methodology used for CH2N2 isomers, while HCNN and HNCN data are available in the literature by the same authors (Puzzarini and Gambi in J Chem Phys 122:064316, 2005). For all the species studied, harmonic vibrational frequencies have also been evaluated at the CCSD(T) level in order to obtain zero-point corrections to total energies.
机译:高精度地研究了5种CH2N2异构体,即氰胺,碳二亚胺,重氮甲烷,异氰胺和腈。已经采用了单打和双打耦合群集方法,该方法包括对连接的三重激发进行微扰校正,CCSD(T)以及大小范围从三重到五重zeta的相关一致基组。为了精确预测结构,相对能以及N–H和C–H键离解能,对核心价相关效应进行了外推至完整的基集极限。后者还需要使用与CH2 N2 异构体相同的方法研究HNNC自由基,而HCNN和HNCN数据可从同一作者的文献中获得(Puzzarini和Gambi在J Chem Phys 122 :064316,2005)。对于所有研究的物种,谐波振动频率也在CCSD(T)级别上进行了评估,以便获得总能量的零点校正。

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