Badawi Hassan M
Department of Chemistry, King Fahd University of Peteroleum & Minerals (KFUPM), P.O. Box 125, Dhahran 31261, Saudi Arabia.
Spectrochim Acta A Mol Biomol Spectrosc. 2009 Apr;72(3):523-7. doi: 10.1016/j.saa.2008.10.042. Epub 2008 Nov 5.
The structural stability and C-N internal rotations of phenylurea and phenylthiourea were investigated by DFT-B3LYP and ab initio MP2 and MP4//MP2 calculations with 6-311G** and/or 6-311+G** basis sets. The complex multirotor internal rotations in phenylurea and phenylthiourea were investigated at the B3LYP/6-311+G** level of theory from which several clear minima were predicted in the calculated potential energy scans of both molecules. For phenylurea two minima that correspond to non-planar- (CNCC dihedral angle of about 45 degrees ) cis (CNCO dihedral angle is near 0 degrees ) and trans (CNCO dihedral angle is near 180 degrees ) structures were predicted to have real frequency. For phenylthiourea only the non-planar-trans structure was predicted to be the low energy minimum for the molecule. The vibrational frequencies of the lowest energy non-planar-trans conformer of each of the two molecules were computed at the B3LYP level and tentative vibrational assignments were provided on the basis of normal coordinate analysis and experimental infrared and Raman data.
通过采用6-311G和/或6-311+G基组的密度泛函理论(DFT-B3LYP)以及从头算MP2和MP4//MP2计算,研究了苯基脲和苯基硫脲的结构稳定性及C-N内旋转。在B3LYP/6-311+G**理论水平下研究了苯基脲和苯基硫脲中复杂的多转子内旋转,据此在两个分子的计算势能扫描中预测出了几个明显的极小值。对于苯基脲,预测对应非平面(CNCC二面角约为45度)顺式(CNCO二面角接近0度)和反式(CNCO二面角接近180度)结构的两个极小值具有实频。对于苯基硫脲,仅预测非平面反式结构是该分子的低能量极小值。在B3LYP水平下计算了两个分子中每个分子最低能量非平面反式构象体的振动频率,并基于简正坐标分析以及实验红外和拉曼数据给出了初步的振动归属。