Pyrch Mikaela M, Bjorklund Jennifer L, Williams James M, Parr Iv Daniel L, Mason Sara E, Leddy Johna, Forbes Tori Z
Department of Chemistry, University of Iowa, Iowa City, IA 52242, USA.
Dalton Trans. 2020 May 28;49(20):6854-6866. doi: 10.1039/d0dt00848f. Epub 2020 May 8.
The neptunyl (Np(v)O/Np(vi)O) cation is the dominant form of Np in acidic aqueous solutions and the stability of the Np(v) and Np(vi) species is driven by the specific chemical constituents present in the system. Hydrogen bonding with the oxo group may impact the stability of these species, but there is limited understanding of how these intermolecular interactions influence the behavior of both solution and solid-state species. In the current study, we systematically evaluate the interactions between the neptunyl tetrachloride species and hydrogen donors in coordination complexes and in the related aqueous solutions. Both Np(v) compounds (NCH)[Np(v)OCl]Cl (Np(V)pipz) and (NOCH)[Np(v)OCl] (Np(V)morph) exhibit directional hydrogen bonding to the neptunyl oxo group while Np(vi) compounds (NCH)[Np(vi)OCl] (Np(VI)pyr) and (NOCH)[Np(vi)OCl]·2Cl (Np(VI)morph) assemble via halogen interactions. The Raman spectra of the solid-state phases indicate the activation of vibrational bands when there is asymmetry of the neptunyl bond, while these spectral features are not observed within the related solution phase spectra. Density functional theory calculations of the Np(V)pipz system suggest that activation of the ν asymmetric stretch and other combination modes lead to additional complexity within the solid-state spectra. Electrochemical analyses of complexes in the solution phases are consistent with the results of the crystallization experiments as the voltammetric potentials of Np(v)/Np(vi) complexes in the presence of protonated heterocycles differ from the potentials of pure Np(v) and may correlate with the hydrogen bonding interactions.
镎酰(Np(v)O/Np(vi)O)阳离子是镎在酸性水溶液中的主要存在形式,Np(v)和Np(vi)物种的稳定性受体系中特定化学成分的驱动。与氧代基团的氢键作用可能会影响这些物种的稳定性,但对于这些分子间相互作用如何影响溶液和固态物种的行为,人们的了解有限。在本研究中,我们系统地评估了四氯化镎酰物种与配位络合物及相关水溶液中的氢供体之间的相互作用。Np(v)化合物(NCH)[Np(v)OCl]Cl(Np(V)pipz)和(NOCH)[Np(v)OCl](Np(V)morph)都表现出与镎酰氧代基团的定向氢键作用,而Np(vi)化合物(NCH)[Np(vi)OCl](Np(VI)pyr)和(NOCH)[Np(vi)OCl]·2Cl(Np(VI)morph)则通过卤素相互作用聚集。固态相的拉曼光谱表明,当镎酰键不对称时,振动带会被激活,而在相关溶液相光谱中未观察到这些光谱特征。Np(V)pipz体系的密度泛函理论计算表明,ν不对称拉伸和其他组合模式的激活导致了固态光谱中额外的复杂性。溶液相中络合物的电化学分析与结晶实验结果一致,因为在存在质子化杂环的情况下,Np(v)/Np(vi)络合物的伏安电位与纯Np(v)的电位不同,且可能与氢键相互作用相关。