Laboratoire de Chimie Théorique, Unité de Chimie Physique Théorique et Structurale, University of Namur, Rue de Bruxelles 61, B-5000 Namur, Belgium.
Spectrochim Acta A Mol Biomol Spectrosc. 2014 Feb 5;119:34-41. doi: 10.1016/j.saa.2013.05.025. Epub 2013 Jun 4.
The effects of the atomic basis set and of the exchange-correlation (XC) functional on the Inelastic Electron Tunneling (IET) spectra have been investigated by considering the prototypical 1,4-benzenedithiol molecule. These studies have been completed by tackling the reliability of the same methods for predicting the IR absorption spectrum of the same molecule. The main conclusions are (i) the B3LYP XC functional is suitable to predict the relative vibrational frequencies, (ii) provided a scaling factor is used, the root mean square error on the vibrational frequencies goes down to 18 cm(-1), (iii) triple-ζ basis sets and in particular the cc-pVTZ basis set is a good compromise between accuracy and computational needs, (iv) basis set effects on the IET intensities are larger than those of the XC functional, and (v) the cc-pVTZ, cc-pVQZ, and aug-cc-pVDZ basis sets provide consistent IET intensities.
已经通过考虑典型的 1,4-苯二硫醇分子,研究了原子基组和交换相关(XC)函数对非弹性电子隧道(IET)光谱的影响。通过处理相同方法预测相同分子的红外吸收光谱的可靠性,完成了这些研究。主要结论是:(i)B3LYP XC 函数适合预测相对振动频率,(ii)使用比例因子时,振动频率的均方根误差降低到 18 cm(-1),(iii)三 ζ 基组,特别是 cc-pVTZ 基组是准确性和计算需求之间的良好折衷,(iv)基组对 IET 强度的影响大于 XC 函数的影响,以及(v)cc-pVTZ、cc-pVQZ 和 aug-cc-pVDZ 基组提供一致的 IET 强度。