Abdo Yasmeen A, Tschumper Gregory S
Department of Chemistry and Biochemistry, University of Mississippi, University, Mississippi 38677-1848, United States.
J Phys Chem A. 2020 Oct 22;124(42):8744-8752. doi: 10.1021/acs.jpca.0c06466. Epub 2020 Sep 29.
This study systematically examines the interactions of the hexafluorophosphate anion (PF) with one or two solvent water molecules (PF(HO) where = 1, 2). Full geometry optimizations and subsequent harmonic vibrational frequency computations are performed on each stationary point using a variety of common density functional theory methods (B3LYP, B3LYP-D3, M06-2X, and ωB97XD) and the MP2 and CCSD(T) methods with a triple-ζ correlation consistent basis set augmented with diffuse functions on all non-hydrogen atoms (cc-pVTZ for H and aug-cc-pVTZ for P, O, and F; denoted as haTZ). Five new stationary points of PF(HO) have been identified, one of which has an electronic energy of approximately 2 kcal mol lower than the only other dihydrate structure reported for this system. The CCSD(T) computations also reveal that the detailed interactions between PF and HO can be quite difficult to model reliably, with some methods struggling to correctly characterize stationary points for = 1 or accurately reproduce the vibrational frequency shifts induced by the formation of the hydrated complex. Although the interactions between the solvent and ionic solute are quite strong (CCSD(T) electronic dissociation energy ≈10 kcal mol for the monohydrate minimum), the solvent-solvent interactions in the lowest-energy PF(HO) minimum give rise to appreciable cooperative effects not observed in the other dihydrate minima. In addition, this newly identified structure exhibits the largest frequency shifts in the OH stretching vibrations for the waters of hydration (with Δω exceeding -100 cm relative to the values for an isolated HO molecule).
本研究系统地考察了六氟磷酸根阴离子(PF)与一个或两个溶剂水分子(PF(HO),其中 = 1, 2)之间的相互作用。使用多种常见的密度泛函理论方法(B3LYP、B3LYP-D3、M06-2X和ωB97XD)以及MP2和CCSD(T)方法,在每个驻点上进行了全几何优化以及随后的简谐振动频率计算,这些方法采用了三ζ相关一致基组,并在所有非氢原子上增加了弥散函数(氢原子用cc-pVTZ,磷、氧和氟原子用aug-cc-pVTZ;记为haTZ)。已确定了PF(HO)的五个新驻点,其中一个驻点的电子能量比该系统报道的唯一另一种二水合物结构低约2 kcal/mol。CCSD(T)计算还表明,PF与HO之间的详细相互作用可能很难可靠地建模,一些方法难以正确表征 = 1时的驻点,或准确再现水合络合物形成引起的振动频率位移。尽管溶剂与离子溶质之间的相互作用很强(一水合物最小值的CCSD(T)电子离解能≈10 kcal/mol),但最低能量的PF(HO)最小值中的溶剂 - 溶剂相互作用产生了在其他二水合物最小值中未观察到的明显协同效应。此外,这种新确定的结构在水合水分子的OH伸缩振动中表现出最大的频率位移(相对于孤立HO分子的值,Δω超过 -100 cm)。