SmF3-CeF3-NaCl-KCl体系盐熔体的光谱研究

V. Zinchenko, O. Ieriomin, I. Stoianova, G. Volchak, N. Chivireva, P. Doga, O. V. Stamikosto
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引用次数: 0

摘要

利用红外透射光谱、漫反射电子能谱和发光能谱等方法建立了SmF3-CeF3和SmF3-CeF3- nacl - kcl体系组分之间的氧化还原相互作用。当从第一个系统过渡到第二个系统时,发现红外光谱范围内的透明度显著降低,这是由于盐熔体中超微分散的氟化物颗粒散射增加所致。在这两种体系中,观察到大量Sm (II)的形成和Sm (III)含量的减少。在1100℃固相热处理和700℃盐液保温过程中,钐的价态发生变化,表现为部分吸收带消失,新吸收带出现,其余吸收带发生石膏色移。发光光谱在640 ~ 740 nm范围内呈现高强度发射带,对应于Sm2+离子中的5d - 4f电子跃迁。同时,在Ce3+离子中心内5d - 4f电子跃迁对应的波段中观察到最高的强度。显然,由配合氟化物与盐熔体交换反应形成的Ce(IV)化合物随后续分解挥发,不影响发光特性。总体上看,熔盐中处理后的发光强度增加了几十倍,表明辐射机理发生了显著变化。讨论了固相氧化还原反应的机理,以及盐熔体和结晶后的交换过程。假设了镧系氟化物粒子周围的溶剂化壳在发光过程中的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPECTROSCOPIC STUDY OF SALT MELTS OF THE SmF3-CeF3-NaCl-KCl SYSTEM
Redox interactions between the components of the SmF3-CeF3 and SmF3-CeF3-NaCl-KCl systems have been established by IR transmission spectroscopy, diffuse reflectance electron spectroscopy and luminescence spectroscopy. A significant decrease in the transparency in the IR range of the spectrum was found when passing from the first of the systems to the second, which is explained by an increase in scattering by ultramicrodispersed particles of fluorides in the salt melt. In both systems, the formation of a significant amount of Sm (II) and a decrease in the content of Sm (III) are observed. The change in the valence state of Samarium both during solid-phase heat treatment (1100 °C) and during holding in a salt melt at 700 °C is manifested in the disappearance of some absorption bands, the appearance of new bands, and a gypsochromic shift of the remaining bands. The luminescence spectra exhibit high-intensity emission bands in the 640–740 nm range, which correspond to 5d‑4f electronic transitions in Sm2+ ions. At the same time, the highest intensity is observed in the band corresponding to intracenter 5d‑4f electronic transitions in Ce3+ ions. Apparently, the Ce(IV) compound, formed as a result of the exchange reaction of complex fluoride with a salt melt, volatilizes with subsequent decomposition and does not affect the character of luminescence. On the whole, the luminescence intensity after treatment in the molten salt increases by several tens of times, which indicates a significant change in the radiation mechanism. The mechanism of redox reactions in the solid-phase state, as well as exchange processes in the salt melt and after its crystallization, is discussed. A significant role of solvation shells around particles of lanthanide fluorides in luminescence processes is assumed.
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