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Growth dynamics of zinc selenide quantum dots: the role of oleic acid concentration and synthesis temperature on driving optical properties

机译:硒化锌量子点的生长动态:油酸浓度和合成温度对驱动光学性能的作用

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摘要

The growth dynamics of zinc selenide quantum dots (ZnSe QDs) using oleic acid as stabilizer was addressed in this work. The QDs were synthesized by hot-injection method, using 2:1 and 10:1 oleic acid/zinc acetate ratio at 170, 190, and 210 degrees C. The syntheses were carried out for 30min, 1, 2, and 3h and the samples were characterized by transmission electron microscopy, high-resolution transmission electron microscopy, X-ray diffraction, and UV-Vis spectroscopy. The QDs diameter was evaluated by Effective Mass Approximation theory from the optical band gap. Lower oleic acid/zinc acetate molar ratio resulted in smaller particles and narrower size distribution. These results, evaluated under the light of Classical Nucleation and Growth Theory, were attributed to a smaller solubility of the monomers in the oleic acid solution. This effect leads to an increased supersaturation, promoting faster nucleation and, eventually, diffusion controlled growth, resulting in particles with narrower size distribution.
机译:在这项工作中解决了使用油酸作为稳定剂的硒化锌量子点(ZnSe QDS)的生长动态。通过热注射方法,使用2:1和10:1的油酸/乙酸锌比在170,190和210℃下合成QD。合成的合成30min,1,2和3h,通过透射电子显微镜,高分辨率透射电子显微镜,X射线衍射和UV-Vis光谱,表征样品。通过从光学带隙的有效质量近似理论评估QD直径。较低的油酸/醋酸锌摩尔比导致较小的颗粒和较窄的尺寸分布。在经典成核和生长理论的光下评价的这些结果归因于油酸溶液中单体的较小溶解度。这种效果导致过饱和增加,促进更快的成核,最终扩散控制的生长,导致具有较窄尺寸分布的颗粒。

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