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首页> 外文期刊>Journal of the Iranian Chemical Society >A misunderstanding about upconversion luminescence of carbon quantum dots
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A misunderstanding about upconversion luminescence of carbon quantum dots

机译:对碳量子点上转换发光的误解

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During the recent few years, a number of articles based on detecting the upconversion luminescence in graphene quantum dots (GQDs) or carbon quantum dots (CQDs) using spectrofluorimetry with non-coherent monochromatic light source have been published in trusted journals. Accordingly, some related applications of this phenomenon such as dye degradation with the advantage of using a higher wavelength range of light have been reported. Herein, we have selected four synthetic methods for preparation of CQDs to examine their upconversion properties in the presence and absence of an excitation filter. Independent of different synthetic strategies used, the results clearly indicated that the so-called upconversion phenomenon is, in fact, only a normal photoluminescence excited by the second-order diffraction light (lambda/2) passing from the excitation monochromator. In addition, CQDs were used to prepare TiO2/CQDs nanocomposites in order to check their potential applications in degradation of methyl orange using the visible range of light. From the results, no difference between the efficiency of pure TiO2 and TiO2/CQDs nanocomposites using this range of wavelengths were observed.
机译:在最近几年中,许多基于在非相干单色光源下使用分光荧光法检测石墨烯量子点(GQD)或碳量子点(CQDs)中的上转换发光的文章已发表在可信赖的期刊上。因此,已经报道了这种现象的一些相关应用,例如具有使用较高波长范围的光的优点的染料降解。本文中,我们选择了四种合成方法来制备CQD,以检查在有无激励滤波器的情况下它们的上转换特性。与所使用的不同合成策略无关,结果清楚地表明,所谓的上转换现象实际上仅是由来自激发单色仪的二阶衍射光(λ/ 2)激发的正常光致发光。此外,CQD用于制备TiO2 / CQDs纳米复合材料,以便使用可见光范围检查其在降解甲基橙中的潜在应用。从结果来看,使用该波长范围的纯TiO2和TiO2 / CQDs纳米复合材料的效率之间没有发现差异。

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