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Determination of particle size distribution of water-soluble CdTe quantum dots by optical spectroscopy

机译:光谱法测定水溶性CdTe量子点的粒度分布

摘要

In the present study, we report the synthesis of glutathione (GSH) capped CdTe quantum dots (QDs) using the one-pot approach as well as their optical properties. These QDs were used as a probe for a detailed quantitative correlation between spectroscopic data and QDs size dispersion. We have developed a spectroscopic method to determine the size dispersion of QDs in solution based on the fluorescence spectroscopy and the fluorescence quantum yields. Our results demonstrate that the one-pot approach produces GSH-capped CdTe QDs of narrow size dispersion, as inferred by the sharp line width (full width at half maximum) of the fluorescence signal (from 153 meV to 163 meV), as revealed by our spectroscopy method. We observed that the GSH-capped CdTe QDs cause an increase in fluorescence quantum yield from 11% to 30% concomitantly with an increase in lifetime decay from 38 to 50 ns during the course of synthesis (from 15 min to 120 min), indicating an increase in the average size of the QDs. Finally, we have used the evolving factor analysis together with the multivariate curve resolutionalternating least squares method to corroborate our results, and we found a good agreement between both methods with the advantage that in our method, we were able to obtain size dispersion rather than just the mean QD size.
机译:在本研究中,我们报告了使用一锅法合成谷胱甘肽(GSH)封端的CdTe量子点(QDs)及其光学性质。这些QD用作探测光谱数据和QD尺寸分散之间详细定量相关性的探针。我们已经开发了一种基于荧光光谱和荧光量子产率的光谱方法来确定溶液中量子点的大小分散。我们的结果表明,一锅法产生的GSH封端的CdTe QD的尺寸分散较窄,这可以通过荧光信号的尖锐的线宽(从153 meV到163 meV)推断出来(半峰全宽)。我们的光谱法。我们观察到,在合成过程中(从15分钟到120分钟),GSH封端的CdTe QD导致荧光量子产率从11%增加到30%,而寿命衰减从38 ns增加到50 ns。量子点的平均大小增加。最后,我们将演化因子分析与多元曲线分辨率交替最小二乘方法一起使用来证实我们的结果,并且我们发现这两种方法之间具有很好的一致性,其优点在于,我们能够获得尺寸分散,而不仅仅是平均QD大小。

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