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Quantum chemical studies of nitrosobuta-1,3-diene and nitrosostyrene molecules

机译:亚硝基1,3-二烯和亚硝基苯乙烯分子的量子化学研究

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摘要

Ab initio and density functional theory calculations have been performed for 1-nitrosobuta-1,3-diene, 2-nitrosobuta-1,3-diene, nitrosostyrene and dimeric form of nitrosostyrene molecules. Molecular geometries and energies have been determined at HF, MP2, QCISD, B3LYP and B3PW91 levels of theory employing 6-31G~* basis set. It is found that trans form of nitrosobuta-1,3-diene is the most stable isomer in both 1-nitrosobuta-1,3-diene and 2-nitrosobuta-1,3-diene. The vibrational spectra of the above molecules have been obtained at MP1/6-31G~* level of theory. For the nitrosostyrene dimer, hydrogen bond length and interaction energy have been calculated. Basis set superposition errors have been eliminated by using the full counterpoise correction method. Chemical hardness and chemical potentials have been used to study the stability of the molecules.
机译:从头算和密度泛函理论计算已针对1-nitrosobuta-1,3-diene,2-nitrosobuta-1,3-diene,亚硝基苯乙烯和亚硝基苯乙烯分子的二聚形式进行了计算。分子的几何形状和能量已使用6-31G〜*基集在理论的HF,MP2,QCISD,B3LYP和B3PW91的水平上确定。发现在1-硝基sobuta-1,3-二烯和2-硝基sobuta-1,3-二烯中,亚硝基sutata-1,3-二烯的反式是最稳定的异构体。以上分子的振动光谱是在理论上的MP1 / 6-31G〜*水平获得的。对于亚硝基苯乙烯二聚体,已经计算了氢键长度和相互作用能。通过使用完全平衡法校正方法,消除了基集叠加误差。化学硬度和化学势已用于研究分子的稳定性。

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