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成熟对锰掺杂硒化锌纳米晶体的影响。

Impact of ripening on manganese-doped ZnSe nanocrystals.

作者信息

Zu Lijun, Norris David J, Kennedy Thomas A, Erwin Steven C, Efros Alexander L

机构信息

University of Minnesota, 421 Washington Avenue Southeast, Minneapolis, Minnesota 55455, USA.

出版信息

Nano Lett. 2006 Feb;6(2):334-40. doi: 10.1021/nl051732y.

Abstract

We examine the impact of growth kinetics on the incorporation of Mn dopants into ZnSe nanocrystals. We synthesize such particles, also known as colloidal quantum dots, and use optical spectroscopy to extract information about the average number of Mn impurities per nanocrystal as the reaction proceeds. We find that this number increases with particle growth until the Zn and/or Se precursors are depleted in the reaction solution. If the reaction is continued further, then ripening of the colloid begins and the average number of Mn per nanocrystal decreases, even as the particles slowly increase in size. We show that this effect, which is detrimental for enhanced doping, can be avoided if the reactant concentration is maintained by addition of more reactants. We consider several explanations and conclude that intraparticle ripening, in which material is redistributed on the same nanocrystal due to evolution of the particle shape, is the most consistent with experimental observations.

摘要

我们研究了生长动力学对锰掺杂剂掺入硒化锌纳米晶体的影响。我们合成了这类粒子(也称为胶体量子点),并利用光谱学来获取随着反应进行每个纳米晶体中锰杂质平均数量的相关信息。我们发现,这个数量随着粒子生长而增加,直到反应溶液中的锌和/或硒前驱体耗尽。如果反应进一步持续,那么胶体开始熟化,尽管粒子尺寸缓慢增大,但每个纳米晶体中锰的平均数量会减少。我们表明,如果通过添加更多反应物来维持反应物浓度,那么这种对增强掺杂不利的效应是可以避免的。我们考虑了几种解释并得出结论,即粒子内熟化(由于粒子形状演变导致材料在同一纳米晶体上重新分布)与实验观察结果最为相符。

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