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The effect of annealing and photoactivation on the optical transitions of band-band and surface trap states of colloidal quantum dots in PMMA

机译:退火和光活化对PMMA胶体量子点的能带和表面陷阱态的光学跃迁的影响

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For optoelectronic applications, colloidal CdSe quantum dots (QDs) have been integrated into solid devices by using optically transparent polymer matrices that embedded the colloidal QDs. We systematically studied the effect of annealing and photoactivation on the band-band (BB) and surface trap state (STS) transitions of colloidal CdSe QDs embedded in polymethylmethacrylate (QDs-PMMA). The QDs-PMMA composites demonstrate enhancement of the STS emissions while their annealing leads to an intensity quench of both BB and STS emissions. The annealing process also causes the red shift of the BB emission. By contrast, photoactivation of QDs-PMMA composites results in the remarkable recovery of luminescence intensity accompanied by blue shift of the emissions. Furthermore, it is found in the photoactivation process that the STS emission can be saturated earlier than the BB emission, which renders it possible to tune the light color of the emissions. The combination of annealing and photoactivation could undoubtedly provide an effective way to precisely tune the colors of light-emitting devices that use colloidal CdSe QDs.
机译:对于光电应用,已经通过使用嵌入胶体QD的光学透明聚合物矩阵将胶体CdSe量子点(QD)集成到了固态设备中。我们系统地研究了退火和光活化对嵌在聚甲基丙烯酸甲酯(QDs-PMMA)中的胶体CdSe QDs的能带(BB)和表面陷阱态(STS)跃迁的影响。 QDs-PMMA复合材料表现出STS排放的增强,而它们的退火导致BB和STS排放的强度淬灭。退火过程还会导致BB发射的红移。相比之下,QDs-PMMA复合材料的光活化导致发光强度显着恢复,并伴随发射蓝移。此外,在光活化过程中发现,STS发射可以比BB发射更早地饱和,这使得可以调节发射的光色。退火和光活化的结合无疑可以提供一种有效的方法来精确地调整使用胶体CdSe QD的发光器件的颜色。

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