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首页> 外文期刊>Journal of Luminescence >Photoluminescence behaviors of single CdSe/ZnS/TOPO nanocrystals: Adsorption effects of water molecules onto nanocrystal surfaces
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Photoluminescence behaviors of single CdSe/ZnS/TOPO nanocrystals: Adsorption effects of water molecules onto nanocrystal surfaces

机译:CdSe / ZnS / TOPO纳米晶体的光致发光行为:水分子对纳米晶体表面的吸附作用

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摘要

We report here the distinctive modifications of photoluminescence (PL) behaviors in single CdSe/ZnS/TOPO nanocrystals depending on their environments. Long-time traces of PL intensity from single nanocrystals have been obtained in both vacuum and a wet nitrogen atmosphere. While all of the nanocrystals in both environments exhibit PL blinking behaviors, i.e. on-off intermittency of PL intensity, as usual, some of the nanocrystals in the wet nitrogen atmosphere show significant increase in duration time of on-events. As for the duration time of blinking off-events, it is for the moment associated with the occasional events of carrier capturing at trap sites on or near the nanocrystal surfaces. We propose a model in which adsorbed water molecules at the trap sites on the nanocrystal surfaces transform them under light irradiation, which eventually decreases the occurrence of the trapping events due to their inactivation. It in turn increases the PL on-times. In addition to the drastic modification of the blinking profile, we also found that in the PL time traces some kinds of undulated behaviors, i.e. continuous and rather low frequency fluctuation of PL intensity, appear during each on-event in vacuum while they disappear totally in the wet nitrogen atmosphere. These results are also described on the basis of the inactivation model of the trap sites introduced above.
机译:我们在这里报告了单个CdSe / ZnS / TOPO纳米晶体中取决于其环境的光致发光(PL)行为的显着改变。在真空和湿氮气氛下均获得了来自单个纳米晶体的PL强度的长期痕迹。尽管在两种环境中所有纳米晶体都表现出PL闪烁行为,即PL强度的开-关间歇性,但通常情况下,湿氮气氛中的某些纳米晶体的事件持续时间显着增加。至于闪烁事件的持续时间,目前与偶载事件在纳米晶体表面上或附近的陷阱位点捕获载流子有关。我们提出了一个模型,在该模型中,纳米晶体表面陷阱位置上吸附的水分子在光照射下将其转化,这最终减少了由于其失活而导致的陷阱事件的发生。反过来,这会增加PL的接通时间。除了对眨眼的轮廓进行了大幅修改外,我们还发现,在PL时间轨迹中,在真空中的每个事件中都会出现一些波动的行为,即PL强度的连续且相当低的频率波动,而在真空中则完全消失。潮湿的氮气气氛。这些结果也基于上面介绍的陷阱位点的灭活模型进行了描述。

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