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无膦合成高质量的反向 I 型 ZnSe/CdSe 核与 CdS/Cd(x)Zn(1 - x)S/ZnS 多壳层纳米晶体及其在人乙型肝炎表面抗原检测中的应用。

Phosphine-free synthesis of high-quality reverse type-I ZnSe/CdSe core with CdS/Cd(x)Zn(1 - x)S/ZnS multishell nanocrystals and their application for detection of human hepatitis B surface antigen.

机构信息

Key Laboratory for Special Functional Materials, Henan University, Kaifeng 475004, People's Republic of China.

出版信息

Nanotechnology. 2011 Sep 16;22(37):375602. doi: 10.1088/0957-4484/22/37/375602. Epub 2011 Aug 19.

DOI:10.1088/0957-4484/22/37/375602
PMID:21852741
Abstract

Highly photoluminescent (PL) reverse type-I ZnSe/CdSe nanocrystals (NCs) and ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS core/multishell NCs were successfully synthesized by a phosphine-free method. By this low-cost, 'green' synthesis route, more than 10 g of high-quality ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS NCs were synthesized in a large scale synthesis. After the overgrowth of a CdS/Cd(x)Zn(1 - x)S/ZnS multishell on ZnSe/CdSe cores, the PL quantum yields (QYs) increased from 28% to 75% along with the stability improvement. An amphiphilic oligomer was used as a surface coating agent to conduct a phase transfer experiment, core/multishell NCs were dissolved in water by such surface modification and the QYs were still kept above 70%. The as-prepared water dispersible ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS core/multishell NCs not only have high fluorescence QYs but also are extremely stable in various physiological conditions. Furthermore, a biosensor system (lateral flow immunoassay system, LFIA) for the detection of human hepatitis B surface antigen (HBsAg) was developed by using this water-soluble core/multishell NCs as a fluorescent label and a nitrocellulose filter membrane for lateral flow. The result showed that such ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS core/multishell NCs were excellent fluorescent labels to detect HBsAg. The sensitivity of HBsAg detection could reach as high as 0.05 ng ml( - 1).

摘要

通过无膦绿色合成方法成功制备了具有高光致发光(PL)性能的反向Ⅰ型 ZnSe/CdSe 纳米晶体(NCs)和 ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS 核/多壳 NCs。通过这种低成本、绿色的合成路线,在大规模合成中成功制备了超过 10 g 的高质量 ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS NCs。在 ZnSe/CdSe 核上生长 CdS/Cd(x)Zn(1 - x)S/ZnS 多壳后,PL 量子产率(QY)从 28%提高到 75%,同时稳定性也得到提高。采用两亲性低聚物作为表面包覆剂进行相转移实验,经表面修饰后,核/多壳 NCs 溶解在水中,QY 仍保持在 70%以上。所制备的水分散性 ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS 核/多壳 NCs 不仅具有高荧光 QY,而且在各种生理条件下也极其稳定。此外,还利用这种水溶性核/多壳 NCs 作为荧光标记物和硝酸纤维素滤膜用于侧向流动,开发了用于检测人乙型肝炎表面抗原(HBsAg)的生物传感器系统(横向流动免疫分析系统,LFIA)。结果表明,这种 ZnSe/CdSe/CdS/Cd(x)Zn(1 - x)S/ZnS 核/多壳 NCs 是检测 HBsAg 的优异荧光标记物。HBsAg 检测的灵敏度可高达 0.05 ng ml(-1)。

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