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Solvation structure of lanthanide(III) ions in solvent mixtures of N,N-dimethylformamide and N,N-dimethylacetamide studied by titration Raman spectroscopy

机译:滴定拉曼光谱法研究N,N-二甲基甲酰胺和N,N-二甲基乙酰胺的溶剂混合物中镧系元素的溶剂化结构

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The Raman spectra of neodymium(III), gadolinium(III) and thulium(III) perchlorate solutions of varying salt molalities were measured in N,N-dimethylformamide (DMF), N,N-dimethylacetamide (DMA) and their mixtures by titration Raman spectroscopy at 298 K. The in-plane O=C-N bending vibration at 660 cm(-1) of DMF and the stretching N-CH3 vibration at 740 cm(-1) of DMA show an appreciable shift to a higher frequency upon coordination of the solvent molecules to the metal ion. In DMF-DMA mixtures, the magnitude of the shift for the delta(O=C-N) and nu(N-CH3) vibrations of bound solvent molecules, Deltanu(DMF), and Deltanu(DMA), respectively, depends on the solvent composition, and the variation profile of Deltanu(DMA) is in parallel with that of the Ln-O(solvent) bond length. The number of solvent molecules bound to the metal ion or the individual solvation number in a solvent mixture, n(DMF) and n(DMA) for DMF and DMA, respectively, were evaluated by analyzing the intensity decrease of the free solvent bands with increasing molality of the metal ion. It is indicated that a strong solvation steric effect operates among bound solvent molecules, i.e., the total solvation number decreases with increasing DMA content, and the variation profile depends on the metal ion. The individual solvation number of DMA was found to be 3 at around x(DMA) = 0.4 for all the metal systems examined. [References: 26]
机译:在N,N-二甲基甲酰胺(DMF),N,N-二甲基乙酰胺(DMA)及其混合物中通过拉曼滴定法测量了盐浓度不同的钕(III),ado(III)和th(III)高氯酸盐溶液的拉曼光谱光谱在298 K时的光谱。DMF在660 cm(-1)处的面内O = CN弯曲振动和DMA在740 cm(-1)处的拉伸N-CH3振动表明,当与溶剂分子到金属离子。在DMF-DMA混合物中,结合的溶剂分子Deltanu(DMF)和Deltanu(DMA)的delta(O = CN)和nu(N-CH3)振动的位移幅度分别取决于溶剂组成,而Deltanu(DMA)的变化曲线与Ln-O(溶剂)键长的变化曲线平行。通过分析自由溶剂带随强度增加而降低的强度来评估与金属离子结合的溶剂分子数目或溶剂混合物中单独的溶剂化数目,分别为DMF和DMA的n(DMF)和n(DMA)。金属离子的摩尔浓度。表明在结合的溶剂分子之间有很强的溶剂化空间效应,即,总溶剂化数随DMA含量的增加而降低,并且变化曲线取决于金属离子。对于所检查的所有金属系统,发现在约x(DMA)= 0.4时,DMA的单独溶剂化数为3。 [参考:26]

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