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Layer-by-layer Deposition of Organically Capped Quantum Dots

机译:有机封顶的量子点的逐层沉积

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Cadmium chalcogenide quantum dots (QD's) were synthesised using a single source approach while zinc oxide QD's were obtained by a colloidal technique. In both situations the dots were surface capped with tri-octylphosphine oxide (TOPO) hence leading to nanodispersed systems in organic solvents such as toluene. The organically capped QD's (CdSe, CdS and ZnO) were used as building-units to fabricate LbL (layer-by-layer) films on glass and quartz substrates. A linear increase in the visible light absorbance (due to the QD's) with the number of deposited layers indicates that multi-layered systems have been fabricated. In order to investigate the effect of the LbL manipulation on the integrity of the QD's, comparative studies on the optical properties of the starting QD's and the nanostructured films have been performed. The observation of quantum size effects in both cases suggests minimal degradation of the QD's though clustering had probably occurred, a point which was further confirmed by AFM analysis.
机译:使用单源方法合成了硫属元素镉量子点(QD),而通过胶体技术获得了氧化锌QD。在这两种情况下,点均被三辛基氧化膦(TOPO)表面覆盖,因此导致在有机溶剂(如甲苯)中形成纳米分散体系。有机封端的QD(CdSe,CdS和ZnO)用作构建单元,以在玻璃和石英基板上制造LbL(逐层)膜。可见光吸收率(由于QD值)随沉积层数的增加而线性增加,表明已制造出多层系统。为了研究LbL操作对量子点完整性的影响,已经对起始量子点和纳米结构薄膜的光学性能进行了比较研究。在两种情况下观察到的量子尺寸效应表明,尽管可能发生了聚集,但量子点的降解却很小,这一点已通过原子力显微镜分析得到了进一步证实。

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