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Control of photoinduced fluorescence enhancement of colloidal quantum dots using metal oxides

机译:用金属氧化物控制光致荧光增强胶体量子点的荧光增强

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It is well known that irradiation of colloidal quantum dots can dramatically enhance their emission efficiencies, leading to so-called photoinduced fluorescence enhancement (PFE). This process is the result of the photochemical and photophysical properties of quantum dots and the way they interact with the environment in the presence of light. It has been shown that such properties can be changed significantly using metal oxides. Using spectroscopic techniques, in this paper we investigate emission of different types of quantum dots (with and without shell) in the presence of metal oxides with opposing effects. We observed significant increase of PFE when quantum dots are deposited on about one nanometer of aluminum oxide, suggesting such oxide can profoundly increase quantum yield of such quantum dots. On the other hand, copper oxide can lead to significant suppression of emission of quantum dots, making them nearly completely dark instantly.
机译:众所周知,胶体量子点的照射可以显着提高它们的排放效率,导致所谓的光抑制荧光增强(PFE)。该方法是量子点的光化学和光物理性质的结果,以及它们在光线存在下与环境相互作用的方式。已经表明,使用金属氧化物可以显着改变这种性能。在本文中,使用光谱技术在具有相反效应的​​金属氧化物存在下,研究不同类型的量子点(随着和不壳)的排放。当量子点沉积在约一个纳米氧化铝上时,我们观察到PFE的显着增加,表明这种氧化物可以深刻地增加这种量子点的量子产率。另一方面,氧化铜可以导致量子点发射的显着抑制,使它们几乎完全暗淡。

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