Pieniazek Piotr A, VandeVondele Joost, Jungwirth Pavel, Krylov Anna I, Bradforth Stephen E
Department of Chemistry, University of Southern California, Los Angeles, California 90089-0482, USA.
J Phys Chem A. 2008 Jul 10;112(27):6159-70. doi: 10.1021/jp802140c. Epub 2008 Jun 18.
The spectroscopic signatures of proton transfer in the water dimer cation were investigated. The six lowest electronic states were characterized along the reaction coordinate using the equation-of-motion coupled-cluster with single and double substitutions method for ionized systems. The nature of the dimer states was explained in terms of the monomer states using a qualitative molecular orbital framework. We found that proton transfer induces significant changes in the electronic spectrum, thus suggesting that time-resolved electronic femtosecond spectroscopy is an effective strategy to monitor the dynamics following ionization. The electronic spectra at vertical and proton-transferred configurations include both local excitations (features similar to those of the monomers) and charge-transfer bands. Ab initio calculations were used to test the performance of a self-interaction correction for density functional theory (DFT). The corrected DFT/BLYP method is capable of quantitatively reproducing the proper energetic ordering of the (H2O)2(+) isomers and thus is a reasonable approach for calculations of larger systems.
研究了水二聚体阳离子中质子转移的光谱特征。使用适用于电离系统的含单双取代的运动方程耦合簇方法,沿着反应坐标对六个最低电子态进行了表征。利用定性分子轨道框架,从单体态的角度解释了二聚体态的性质。我们发现质子转移会引起电子光谱的显著变化,因此表明时间分辨电子飞秒光谱是监测电离后动力学的有效策略。垂直和质子转移构型下的电子光谱包括局部激发(类似于单体的特征)和电荷转移带。使用从头算计算来测试密度泛函理论(DFT)的自相互作用校正的性能。校正后的DFT/BLYP方法能够定量再现(H2O)2(+)异构体的正确能量排序,因此是计算更大系统的合理方法。