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NIR-Emitting Alloyed CdTeSe QDs and Organic Dye Assemblies: A Nontoxic Stable and Efficient FRET System

机译:NIR发射合金CdTeSe QD和有机染料组件:无毒稳定且高效的FRET系统

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摘要

In the present work, we synthesize Near Infrared (NIR)-emitting alloyed mercaptopropionic acid (MPA)-capped CdTeSe quantum dots (QDs) in a single-step one-hour process, without the use of an inert atmosphere or any pyrophoric ligands. The quantum dots are water soluble, non-toxic, and highly photostable and have high quantum yields (QYs) up to 84%. The alloyed MPA-capped CdTeSe QDs exhibit a red-shifted emission, whose color can be tuned between visible and NIR regions (608–750 nm) by controlling the Te:Se molar ratio in the precursor mixtures and/or changing the time reaction. The MPA-capped QDs were characterized by UV-visible absorption spectroscopy, fluorescence spectroscopy, transmission electron microscopy (TEM), energy dispersive X-ray spectroscopy (EDS), and zeta potential measurements. Photostability studies were performed by irradiating the QDs with a high-power xenon lamp. The ternary MPA-CdTeSe QDs showed greater photostability than the corresponding binary MPA-CdTe QDs. We report the Förster resonance energy transfer (FRET) from the MPA-capped CdTeSe QDs as energy donors and Cyanine5 NHS-ester (Cy5) dye as an energy acceptor with efficiency (E) up to 95%. The distance between the QDs and dye (r), the Förster distance (R0), and the binding constant (K) are reported. Additionally, cytocompatibility and cell internalization experiments conducted on human cancer cells (HeLa) cells revealed that alloyed MPA-capped CdTeSe QDs are more cytocompatible than MPA-capped CdTe QDs and are capable of ordering homogeneously all over the cytoplasm, which allows their use as potential safe, green donors for biological FRET applications.
机译:在目前的工作中,我们在一个小时的单步过程中合成了发射近红外(NIR)的合金巯基丙酸(MPA)封端的CdTeSe量子点(QDs),而无需使用惰性气氛或任何发火性配体。量子点是水溶性的,无毒的并且高度光稳定的,并且具有高达84%的高量子产率(QY)。合金化的MPA封端的CdTeSe量子点表现出红移发射,其颜色可以通过控制前体混合物中的Te:Se摩尔比和/或改变时间反应来在可见光和近红外区域(608-750 nm)之间调整。通过紫外可见吸收光谱,荧光光谱,透射电子显微镜(TEM),能量色散X射线光谱(EDS)和Zeta电位测量来表征MPA封端的量子点。通过用高功率氙灯照射量子点来进行光稳定性研究。三元MPA-CdTeSe量子点显示出比相应的二元MPA-CdTe QD更高的光稳定性。我们报道了由MPA封端的CdTeSe QD作为能量供体的Förster共振能量转移(FRET),以及作为能量受体的Cyanine5 NHS-酯(Cy5)染料的效率(E)高达95%。报告了量子点与染料之间的距离(r),福斯特距离(R0)和结合常数(K)。此外,在人类癌细胞(HeLa)上进行的细胞相容性和细胞内在化实验表明,与MPA封闭的CdTe QD相比,合金化的MPA封闭的CdTeSe QD具有更好的细胞相容性,并且能够在整个细胞质中均匀排列,从而使其具有潜在的用途。生物FRET应用的安全绿色捐助者。

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