Puzzarini Cristina, Penocchio Emanuele, Biczysko Malgorzata, Barone Vincenzo
Dipartimento di Chimica "Giacomo Ciamician", Università di Bologna , Via Selmi 2, I-40126 Bologna, Italy.
J Phys Chem A. 2014 Aug 21;118(33):6648-56. doi: 10.1021/jp503672g. Epub 2014 Jun 10.
A comprehensive study of the molecular structure and IR spectrum of cis and trans acrolein has been performed by an integrated computational approach coupling methods rooted in the coupled-cluster ansatz and the density functional theory. From the one side, DFT anharmonic force fields allow us to determine very reliable semiexperimental structures for both isomers, which are in remarkable agreement with the geometries issuing from CCSD(T) computations accounting for the extrapolation to the complete basis set and core correlation. The same kind of coupled-cluster computations provide dipole moment, relative energies, and interconversion barrier in remarkable agreement with experiments. Finally, harmonic CCSD(T) results coupled to DFT evaluation of mechanical and electrical anharmonicity allow us, in the framework of second-order perturbative vibrational theory, to confirm most of the experimental assignments of IR spectra, and to suggest some additional interpretations for congested regions including fundamental bands together with overtones and combination bands.
通过一种综合计算方法对顺式和反式丙烯醛的分子结构和红外光谱进行了全面研究,该方法结合了基于耦合簇假设和密度泛函理论的方法。一方面,密度泛函理论的非谐力场使我们能够为两种异构体确定非常可靠的半实验结构,这些结构与考虑到外推到完整基组和核心相关的CCSD(T)计算得出的几何结构非常一致。同样类型的耦合簇计算提供的偶极矩、相对能量和相互转化势垒与实验结果非常吻合。最后,在二阶微扰振动理论框架下,将谐波CCSD(T)结果与机械和电非谐性的密度泛函理论评估相结合,使我们能够确认红外光谱的大多数实验归属,并对包括基频带以及泛音和组合带在内的拥挤区域提出一些额外的解释。