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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Morphology evolution of micron-scale secondary phases in CdZnTe crystals grown by vertical Bridgman method
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Morphology evolution of micron-scale secondary phases in CdZnTe crystals grown by vertical Bridgman method

机译:垂直布里奇曼法生长CdZnTe晶体中微米级次生相的形貌演化

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摘要

The morphology and evolution of micron-scale Te-rich secondary phases (SP) are discussed based on 1R contrast images. Well-defined, hexagonal or triangular shaped, incoherent Te-rich SP particles were generally identified in as-grown CdZnTe crystals grown with excess Te. The creation of these particles is consistent with the Te-rich droplets encapsulated within the CdZnTe matrix, which grown by accumulation of the point defects. The surrounding CdZnTe crystal dominates the morphology of Te-rich SP particles orienting themselves along crystallographic directions. Star-shaped Te-rich particles and needle-like Te-rich SP clusters were normally revealed in as-grown CdZnTe crystals, obtained under Cd-rich conditions. The former is related to the dislocation loop punching associated with SP particles, which attributed to the internal stress relief. The latter is constituted by numerous small irregular Te precipitates, which is likely produced by the aggregation of Te precipitates along specific paths through thermo-migration during the in situ annealing and cooling processes.
机译:基于1R对比图像,讨论了微米级富Te次生相(SP)的形态和演化。通常在生长有过量Te的CdZnTe晶体中鉴定出轮廓分明的,六角形或三角形,不连贯的富含Te的SP颗粒。这些粒子的产生与封装在CdZnTe基质中的富含Te的液滴一致,该液滴通过点缺陷的积累而生长。周围的CdZnTe晶体主导着富含Te的SP粒子的形态,这些粒子沿晶体学方向定向。正常情况下,在富含Cd的条件下获得的CdZnTe晶体中会出现星形富Te颗粒和针状富Te SP团簇。前者与与SP粒子相关的位错环冲孔有关,后者归因于内部应力释放。后者由许多小的不规则的Te沉淀物构成,这很可能是由于Te沉淀物在原位退火和冷却过程中沿着热迁移沿特定路径聚集而产生的。

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