Liu Cui, Liu Yang, Deng Heming, Tang Shun, Cao Yuan-Cheng
Key Laboratory of Optoelectronic Chemical Materials and Devices, Ministry of Education, School of Chemical and Environmental Engineering, Jianghan University, Wuhan, P. R. China.
State Grid Hegang Electric Power Supply Company, Hegang, P. R. China.
Luminescence. 2019 Mar;34(2):200-204. doi: 10.1002/bio.3594. Epub 2019 Jan 24.
It is a challenging task to prepare well-dispersed and highly luminescent quantum dots (QDs) powder and a new strategy is reported in this article. Sodium carboxymethyl starch (CMS-Na) was employed in this work to prepare the QDs-starch composite. Ultraviolet (UV) light shows that the blank starches had no fluorescence, while the QDs-starches were highly luminescent. Scanning electron microscopy (SEM) observation shows that the QDs-starch composite has the typical particle morphology with the diameter around 200 nm. Energy dispersive X-ray spectroscopy (EDX) results show that there are intensive tellurium (Te) and cadmium (Cd) element signals. Combined fluorescent lifetime and steady-state spectrometer show that the QDs-starch quantum yields (QYs) increase when the QDs loading increases from 1 × 10 mol/g to 2 × 10 mol/g, but when the loadings further increase, the QYs decrease slightly. For the red colour (λ = 660 nm) QDs, the QYs can reach to as high as 28.2%, and for the other colour QDs they can also have the QYs above 22%. Time-resolved photobleaching experiments show that the fluorescent QDs-starch composite has a half-decay time of 40.23 s. These results indicate that the CMS-Na is a promising QDs dispersant to obtain high QY QD composites.
制备分散良好且高发光的量子点(QDs)粉末是一项具有挑战性的任务,本文报道了一种新策略。在这项工作中采用羧甲基淀粉钠(CMS-Na)制备量子点-淀粉复合材料。紫外(UV)光显示空白淀粉无荧光,而量子点-淀粉具有高发光性。扫描电子显微镜(SEM)观察表明量子点-淀粉复合材料具有典型的颗粒形态,直径约为200nm。能量色散X射线光谱(EDX)结果表明存在强烈的碲(Te)和镉(Cd)元素信号。结合荧光寿命和稳态光谱仪表明,当量子点负载量从1×10 mol/g增加到2×10 mol/g时量子点-淀粉的量子产率(QYs)增加,但当负载量进一步增加时,量子产率略有下降。对于红色(λ = 660nm)量子点,量子产率可高达28.2%,对于其他颜色的量子点,它们的量子产率也可高于22%。时间分辨光漂白实验表明荧光量子点-淀粉复合材料的半衰期为40.23s。这些结果表明CMS-Na是一种有前景的量子点分散剂,可用于获得高量子产率的量子点复合材料。