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Reactions in Crystalline Lattices: Chemistry of Lower Valence States of Lanthanides

机译:晶格中的反应:镧系元素的低价态化学

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摘要

Reduction of rare-earth (RE) ions to lower valence states in ionic crystals is described in terms of the equilibrium distribution theory for the (alkali halide):RE2+ and (alkaline-earth halide):RE3+ systems. Thermoluminescence glow curves of radiation-reduced CaF2:RE3+ systems reveal that the reoxidation of the divalent ions apparently occurs through thermal excitation of an f electron to the d bands. The additive reduction of RE2+ to the monovalent state in alkali halides yields striking results: While Sm1+ ions in KCl obtained by gamma radiation give rise to broad-band optical spectra which were attributed to 4f66s1 --> 4f56s2 transitions, those obtained through high-temperature additive treatment with liquid K give rise to narrow-line spectra that are not easily interpreted. These results illustrate well the major differences between the radiation reduction and additive reduction processes.
机译:根据(碱金属卤化物):RE2 +和(碱土金属卤化物):RE3 +系统的平衡分布理论,描述了离子晶体中稀土(RE)离子还原为低价态的过程。减少辐射的CaF2:RE3 +系统的热致发光辉光曲线表明,二价离子的再氧化显然是通过将f电子热激发到d波段而发生的。 RE2 +在碱金属卤化物中加成还原成一价态产生了惊人的结果:尽管通过伽马辐射获得的KCl中的Sm1 +离子产生宽带光谱,这归因于4f66s1-> 4f56s2跃迁,而那些是通过高温获得的用液体K进行的附加处理会产生不易解释的窄谱线。这些结果很好地说明了辐射减少和添加剂减少过程之间的主要区别。

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