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Substitution-induced structural transformation in Mn-doped ZnS nanorods studied by positron annihilation spectroscopy

机译:正电子an没光谱研究Mn掺杂ZnS纳米棒中的取代诱导结构转变

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Zinc sulphide nanorods were doped with manganese ions and the structural changes were monitored through positron annihilation measurements. X-ray diffraction and high-resolution transmission electron microscopy revealed a transformation from hexagonal to cubic structure, and we observed characteristic changes in the measured positron lifetimes, their intensities and Doppler broadened lineshapes. These features were explained on the basis of positron trapping and subsequent annihilation at the nanorod surfaces. Further incorporation of manganese resulted in an increase of the diameter of the nanorods, and the effect was reflected in the decreasing lifetime of positrons. At sufficiently high concentration of manganese ions, Mn-Mn clusters were formed. The results are compared with those obtained for ZnS nanoparticles where vacancies within the grains trapped a significant fraction of positrons.
机译:硫化锌纳米棒中掺杂了锰离子,并通过正电子an没测量监测了结构变化。 X射线衍射和高分辨率透射电子显微镜揭示了从六边形到立方结构的转变,并且我们观察到所测量的正电子寿命,强度和多普勒加宽线形的特征变化。这些特征的解释是基于正电子俘获和纳米棒表面随后的an灭。锰的进一步掺入导致纳米棒直径的增加,并且该效果反映在正电子寿命的降低上。在足够高的锰离子浓度下,形成了Mn-Mn簇。将结果与从ZnS纳米颗粒获得的结果进行比较,在这些颗粒中,晶粒内的空位俘获了大量正电子。

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