首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Actinyl-cation interactions: experimental and theoretical assessment of [Np(vi)O2Cl4](2-) and [U(vi)O2Cl4](2-) systems
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Actinyl-cation interactions: experimental and theoretical assessment of [Np(vi)O2Cl4](2-) and [U(vi)O2Cl4](2-) systems

机译:挥发性相互作用:[NP(VI)O 2 Cl 4](2-)和[U(VI)O 2 Cl 4](2-)系统的实验和理论评估

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The interaction of the actinyl (AnO(2)(2+)) oxo group with low-valent cations influences the chemical and physical properties of hexavalent actinides, but the impact of these intermolecular interactions on the actinyl bond and their occurrence in solution and solid state phases remain unclear. In this study, we explore the coordination of alkali cations (Li+, Na+, K+) with the [NpO2Cl4](2-) coordination complexes using single-crystal X-ray diffraction, Raman spectroscopy, and density functional theory (DFT) calculations and compare to the related uranyl system. Three solid-state coordination compounds ([Li(12-crown-4)](2)[NpO2Cl4] (LiNp), [Na(18-crown-6)H2O](2)[NpO2Cl4] (NaNp), and [K(18-crown-6)](2)[NpO2Cl4] (KNp) have been synthesized and characterized using single-crystal X-ray diffraction and Raman spectroscopy. Only Li+ cations interact with the neptunyl oxo in the solid-state compounds and this results in a red-shift of the NpO22+ symmetric stretch (nu(1)). Raman spectra of Np(vi) solutions containing lower Li+ concentrations display a single peak at similar to 854 cm(-1) and increasing the amount of Li+ results in the ingrowth of a second band at 807 cm(-1). DFT calculations and vibrational analysis indicate the lower frequency vibrational band is the result of interactions between the Li+ cation and the neptunyl oxo. Comparison to the related uranyl system shows similar interactions occur in the solid state, but subtle differences in the actinyl-cation modes in solution phase.
机译:具有低价阳离子的抗胰酶(Ano(2)(2 +)(2)(2+))氧代组的相互作用影响六价散曲线的化学和物理性质,但这些分子间相互作用对抗粘接性的影响及其在溶液和固体中的发生国家阶段仍然不清楚。在这项研究中,我们利用单晶X射线衍射,拉曼光谱和密度泛函理论(DFT)计算来探讨碱阳离子(Li +,Na +,K +)与[NPO2Cl4](2-)配位配合的协调与相关的铀系统进行比较。三种固态配位化合物([Li(12-冠-4)](2)[NPO2Cl4](LINP),[Na(18-Crown-6)H 2 O](2)[NPO2Cl4](NANP),以及[通过单晶X射线衍射和拉曼光谱合成K(18-Crown-6)](2)[NPO2Cl4](KNP)并表征。只有Li +阳离子在固态化合物中与Neptonylyly氧代相互作用这导致NPO22 +对称拉伸(NU(1))的红色偏移。含有下Li +浓度的NP(VI)溶液的拉曼光谱显示出类似于854cm(-1)的单峰,并增加Li +的量导致在807cm(-1)的第二带的发起。DFT计算和振动分析表明较低的频率振动带是Li +阳离子与Neptonyly氧代之间相互作用的结果。与相关铀系统的比较显示了类似的相互作用在固态中发生,但溶液阳离子阳离子模式的细微差异。

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