Cu(II)双乙酰丙酮的傅里叶变换红外光谱和拉曼光谱的密度泛函理论研究
Density functional theory study of the Fourier transform infrared and Raman spectra of Cu(II) bis-acetylacetone.
作者信息
Raissi Haidar, Nowroozi Alireza, Farzad Farzaneh, Bojd Mohammad Saeid Hosseini
机构信息
Chemistry Department, Birjand University, Birjand, Iran.
出版信息
Spectrochim Acta A Mol Biomol Spectrosc. 2005 Nov;62(1-3):343-52. doi: 10.1016/j.saa.2005.01.001.
Fourier transform infrared and Fourier transform Raman spectra of Cu(II) bis-acetylacetone have been obtained. The geometry, frequency and intensity of the vibrational bands of this compound and its 1,5-(13)C(2), 3-(13)C, 1,3,5-(13)C(3), 2,4-(13)C(2), (18)O(2) and 2,4-(13)C(2)-(18)O(2) derivatives were obtained by the density functional theory (DFT) with the B3LYP functional and using the 6-31G() and 3-21G() basis sets. The calculated frequencies are compared with the solid infrared and Raman spectra. All the measured infrared and Raman bands were interpreted in terms of the calculated vibrational modes. The percentage of deviation of the bond lengths and bond angles gives a good picture of the normal modes, and serves as a basis for the assignment of the wavenumbers. Most computed bands are predicted to be at higher wavenumbers than the experimental bands. The calculated geometrical parameters show slight differences compared with the experimental results. These differences can be explained by the different physical state of Cu(II) bis-acetylacetone. The DFT-B3LYP calculations assumed a free molecule in the gas phase. Analysis of the vibrational spectra indicates a strong coupling between the chelated ring modes.
已获得双乙酰丙酮铜(II)的傅里叶变换红外光谱和傅里叶变换拉曼光谱。采用密度泛函理论(DFT)中的B3LYP泛函,并使用6 - 31G()和3 - 21G()基组,得到了该化合物及其1,5-(13)C(2)、3-(13)C、1,3,5-(13)C(3)、2,4-(13)C(2)、(18)O(2)和2,4-(13)C(2)-(18)O(2)衍生物的几何结构、振动带频率和强度。将计算得到的频率与固体红外光谱和拉曼光谱进行了比较。所有测量的红外和拉曼谱带都根据计算出的振动模式进行了解释。键长和键角的偏差百分比很好地反映了简正模式,并为波数的归属提供了依据。大多数计算出的谱带预计比实验谱带的波数更高。与实验结果相比,计算得到的几何参数存在细微差异。这些差异可以用双乙酰丙酮铜(II)的不同物理状态来解释。DFT - B3LYP计算假设的是气相中的自由分子。振动光谱分析表明螯合环模式之间存在强耦合。