卤化铵晶体的多态相变与复合发光

T. A. Koketayev, A. Tussupbekova
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引用次数: 0

摘要

本文研究了卤化铵晶体的光谱发光特性。研究了相变温度区域热激发光峰的性质,建立了热激发光峰的基本规律。稀土离子(RI)活化氯化铵的TSL峰在240 K时达到最大值。结果表明,在240 K的温度下,氯化铵的活化RI发生有序-无序相变。TSL峰在240k处出现最大值,这是由于卤化铵被铊和锡离子激活后暴露于电离辐射所致。这种现象是在卤化铵被铕、镱、钕、镨、铜、镉和钾离子激活时观察到的。在晶格中引入杂质同源阴离子不会产生类似的效果。因此,可以认为所观察到的现象与阳离子亚晶格中杂质的存在有关,其出现与杂质中心的参数无关。一方面,TSL峰不是杂质,因为它的位置是由基体的性质决定的;另一方面,它的出现只与阳离子亚晶格中的取代离子有关。所得结果可用于研究晶体在电离辐射下的响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymorphic phase transitions and recombination luminescence in ammonium halide crystals
Spectral-luminescent properties of ammonium halide crystals were studied in this work. The properties of the peak of thermally stimulated luminescence (TSL) in the region of the phase transition temperature were studied and the basic laws were established. A sequential thermal annealing isolated the TSL peak with a maximum at 240 K for ammonium chloride activated with rare-earth ions (RI). It was found that an order-disorder phase transition occurs for activated RI of ammonium chloride at a temperature of 240 K. An appearance of TSL peak with a maximum at 240 K causes because of exposure to ionizing radiation upon activation of ammonium halides by thallium and tin ions. This phenomenon is observed when ammonium halides are activated by europium, ytterbium, neodymium, praseodymium, copper, cadmium and potassium ions. The introduction of impurity homologous anions into the crystal lattice does not give a similar effect. Therefore, it can be argued that observed phenomenon is associated with the presence of impurities in the cationic sublattice and its appearance does not depend on the parameters of the impurity center. On the one hand, the TSL peak is not impurity, since its position is determined by the properties of matrix and on the other hand, its appearance is associated only with substitution ions in the cationic sublattice. The obtained results allow studying the crystals response under exposition to ionizing radiation.
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