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首页> 外文期刊>Luminescence: The journal of biological and chemical luminescence >Synthesis of highly luminescent and biocompatible CdTe/CdS/ZnS quantum dots using microwave irradiation: a comparative study of different ligands
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Synthesis of highly luminescent and biocompatible CdTe/CdS/ZnS quantum dots using microwave irradiation: a comparative study of different ligands

机译:利用微波辐射合成高发光和生物相容性CdTe / CdS / ZnS量子点:不同配体的比较研究

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摘要

We compared the effects of several ligands frequently used in aqueous synthesis, including L-cysteine, L-cysteine hydrochloride, N-acetyl-L-cysteine (NAC), glutathione and 3-mercaptopropionic acid, for microwave synthesis of CdTe quantum dots (QDs) in a sealed vessel with varied temperatures and times, and then developed a rapid microwave-assisted protocol for preparing highly luminescent, photostable and biocompatible CdTe/CdS/ZnS core–multishell QDs. The effects of molecular structures of these ligands on QD synthesis under high temperatures were explored. Among these ligands, NAC was found to be the optimal ligand in terms of the optical properties of resultant QDs and reaction conditions. The emission wavelength of NAC-capped CdTe QDs could reach 700nm in 5 min by controlling the reaction temperature, and the resultant CdTe/CdS/ZnS core–multishell QDs could achieve the highest quantum yields up to 74% with robust photostability. In addition, the effects of temperature, growth time and shell–precursor ratio on shell growth were examined. Finally, cell culturing indicated the low cytotoxicity of CdTe/CdS/ZnS core–multishell QDs as compared to CdTe and CdTe/CdS QDs, suggesting their high potential for applications in biomedical imaging and diagnostics.
机译:我们比较了水合成中常用的几种配体对微波合成CdTe量子点(QD)的影响,包括L-半胱氨酸,L-半胱氨酸盐酸盐,N-乙酰基-L-半胱氨酸(NAC),谷胱甘肽和3-巯基丙酸。 )放在密封的容器中,容器具有不同的温度和时间,然后开发了一种快速的微波辅助方案,用于制备高度发光,光稳定且生物相容的CdTe / CdS / ZnS核-多壳量子点。探索了这些配体的分子结构对高温下量子点合成的影响。在这些配体中,就所得QD的光学性质和反应条件而言,发现NAC是最佳配体。通过控制反应温度,NAC封端的CdTe QD的发射波长可以在5分钟内达到700nm,并且得到的CdTe / CdS / ZnS核-多壳QD可以达到高达74%的最高量子产率,并具有强大的光稳定性。此外,检查了温度,生长时间和壳前体比对壳生长的影响。最后,细胞培养表明与CdTe和CdTe / CdS量子点相比,CdTe / CdS / ZnS核-多壳量子点具有较低的细胞毒性,表明它们在生物医学成像和诊​​断中的应用潜力很大。

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