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High temperature Nb-93 NMR and Raman spectroscopic investigation of the structure and dynamics of solid and liquid NbCl5-alkali chloride solutions

机译:固液NbCl5-碱式氯化物溶液的结构和动力学的高温Nb-93 NMR和拉曼光谱研究

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Pure liquid niobium chloride and solid and liquid NbCl5-alkali chloride solutions were for the first time studied by Nb-93 NMR. Chemical shift (delta) and line width (Deltav(1/2)) measurements were made by using a laboratory made probe head for experiments at elevated temperatures up to 650degreesC. In the case of NbCl5-(LiCl/KCl)(eut), where the salt mixture was not opaque, also Raman spectra could be recorded. For pure liquid NbCl5 the monomer-dimer equilibrium could be investigated. In the temperature range 200degreesC to ca. 500degreesC from the temperature dependence of both delta and Deltav(1/2) the equilibrium constant and the standard entropy and enthalpy for this reaction have been obtained. Binary NbCl5-CsCl and NbCl5-NaCl salt melts and solutions of NbCl5 in solid and liquid eutectic mixtures were investigated by Nb-93 NMR. For some mixtures where the phase behaviour was only partially known, additional differential thermoanalysis (DTA) measurements of the phase diagrams have been performed. By Nb-93 NMR a distinctly different behaviour of CsCl and NaCl containing melts is observed, where the the CsCl melts show relative broad resonance lines and a large negative chemical shift, whereas the NaCl melts reveal typically narrow lines and positive shifts. The broad lines are discussed with respect to the self-reduction reaction Nb5+ --> Nb4+. In the high temperature solid phases of both NaCl and CsCl containing mixtures unusually narrow lines are explained by a fast ionic hopping process in these materials. The stability of oxy complexes in different salt matrices is also discussed. Finally, the observed temperature dependence of the Nb-93 chemical shift (ca. 0.1 ppm K-1) in different salt mixtures is found to be in qualitative agreement with a theoretical estimate, which considers the Nb-Cl distance variation with temperature. [References: 47]
机译:Nb-93 NMR首次研究了纯净的氯化铌溶液和固,液NbCl5-碱式氯化物溶液。化学位移(δ)和线宽(Deltav(1/2))的测量是使用实验室制造的探头在高达650℃的高温下进行的。在NbCl5-(LiCl / KCl)(eut)的情况下,盐混合物不是不透明的,也可以记录拉曼光谱。对于纯液态NbCl5,可以研究单体-二聚体平衡。在200℃至200摄氏度的温度范围内。从delta和Deltav(1/2)的温度依赖性500摄氏度,已经获得了该反应的平衡常数以及标准熵和焓。通过Nb-93 NMR研究了NbCl5-CsCl和NbCl5-NaCl的二元盐熔体以及NbCl5在固体和液体低共熔混合物中的溶液。对于某些仅部分了解相行为的混合物,已执行了相图的其他差分热分析(DTA)测量。通过Nb-93 NMR,观察到CsCl和NaCl熔体的行为截然不同,其中CsCl熔体显示出相对宽的共振线和较大的负化学位移,而NaCl熔体显示出典型的窄线和正位移。关于自还原反应Nb5 +-> Nb4 +讨论了粗线。在高温下,含NaCl和CsCl的混合物的固相通过这些材料中的快速离子跳跃过程可以解释出异常狭窄的线条。还讨论了氧配合物在不同盐基中的稳定性。最后,发现在不同盐混合物中观察到的Nb-93化学位移(约0.1 ppm K-1)的温度依赖性与理论估计在质量上吻合,该理论考虑了Nb-Cl距离随温度的变化。 [参考:47]

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