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Aqueous Route to Biocompatible ZnSe:Mn/ZnO Core/Shell Quantum Dots Using 1-Thioglycerol As Stabilizer

机译:以 1-硫代甘油为稳定剂的生物相容性 ZnSe:Mn/ZnO 核/壳量子点的水性路线

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摘要

Water-dispersible 1-thioglycerol-capped Mn-doped ZnSe quantum dots (QDs) were prepared in aqueous solution through the nucleation-doping method by using safe and low-cost inorganic salts as precursors. Influence of the Zn/Se ratio, precursors concentrations and reaction pH on the particle size, colloidal stability, and photoluminescence (PL) were investigated. Under optimal conditions, thioglycerol-capped ZnSe:Mn QDs with an average diameter of 3.5 nm and a PL quantum yield of 3.5 in water at neutral pH were produced. X-ray powder diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, UV—visible spectroscopy and spectrofluorometry have been used to characterize the crystal structure and the optical properties of the dots. Remarkable improvements of stability in biological medium and PL were achieved by introduction of a ZnO shell through basic hydrolysis of Zn(NO3)2. ZnO was found to eliminate the surface-trap state from Mn ~(2+)-doped ZnSe cores and enhance their PL quantum yield to 12. Growth inhibition tests showed that core/shell ZnSe:Mn/ZnO@TG QDs do not exhibit any cytotoxicity toward E. coli bacterial cells up to a concentration of 0.14 mg/mL, indicating that these nanocrystals can be considered as building blocks for the synthesis of bioprobes for cells and tissues imaging.
机译:以安全、低成本的无机盐为前驱体,采用成核掺杂法在水溶液中制备了水分散性1-硫代甘油封端的Mn掺杂ZnSe量子点(QDs)。研究了Zn/Se比、前驱体浓度和反应pH值对粒径、胶体稳定性和光致发光(PL)的影响。在最佳条件下,在中性pH值下制备了平均直径为3.5 nm、PL量子产率为3.5%的硫代甘油封端ZnSe:Mn QDs。X射线粉末衍射、X射线光电子能谱、透射电子显微镜、紫外-可见光谱和荧光光谱法等技术对点的晶体结构和光学性质进行了表征。通过碱性水解Zn(NO3)2引入ZnO壳,显著提高了在生物介质和PL中的稳定性。ZnO消除了Mn~(2+)掺杂ZnSe核心的表面陷阱态,并将其PL量子产率提高到12%。生长抑制试验表明,核壳ZnSe:Mn/ZnO@TG量子点对浓度高达0.14 mg/mL的大肠杆菌细菌细胞没有表现出任何细胞毒性,表明这些纳米晶体可以被认为是合成用于细胞和组织成像的生物探针的构建单元。

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