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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >An efficient method for preparing high-performance multifunctional polymer beads simultaneously incorporated with magnetic nanoparticles and quantum dots
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An efficient method for preparing high-performance multifunctional polymer beads simultaneously incorporated with magnetic nanoparticles and quantum dots

机译:同时制备磁性纳米粒子和量子点的高性能多功能聚合物珠粒的有效方法

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摘要

An efficient modified method combining conventional swelling method with high-temperature swelling method was applied to prepare high-stable multifunctional MNPs-QD-encoded polystyrene beads simultaneously with large encoding capacity and fast separation. In this paper, the results demonstrate that encapsulating QDs into pre-prepared MNPs-beads is the best sequence, which keeps high brightness and fast separation. The MNPs-QD-encoded microcarriers designed by our proposed method exhibit excellent performance for magnetic manipulation and optical encoding. What is more, they also have better physical and chemical stabilities. Compared with beads prepared via conventional swelling method, the leakage of nanoparticles from the designed MNPs-QD-encoded poly (styrene-co-ethylene glycol dimethacrylate-co-methacrylic acid) beads (PSEMBs) induced by organic solvents (e.g. cyclohexane) is less than 6%; meanwhile, fluorescence intensity of MNPs-QDs-encoded PSEMBs fluctuates slightly more in a wide range of pH 2-12 buffers. In addition, immunoassay performance for human IgG detections indicates that carboxyl groups on fluorescent microsphere surface facilitate efficient attachment of biomolecule and therefore they can be further applied to fast separation and multiplexed biomolecular assays.
机译:结合传统溶胀法和高温溶胀法的高效改进方法,制备了编码量大,分离快的高稳定性多功能MNPs-QD编码聚苯乙烯珠。在本文中,结果表明将QD封装到预先制备的MNP珠中是最佳序列,可保持高亮度和快速分离。通过我们提出的方法设计的MNPs-QD编码微载体在磁操纵和光学编码方面表现出出色的性能。而且,它们还具有更好的物理和化学稳定性。与通过常规溶胀方法制备的珠相比,有机溶剂(例如环己烷)引起的纳米颗粒从设计的MNPs-QD编码的聚(苯乙烯-乙二醇二甲基丙烯酸酯-甲基丙烯酸共聚物)珠(PSEMB)中的泄漏较少超过6%;同时,MNPs-QDs编码的PSEMBs的荧光强度在很大的pH 2-12缓冲液中波动更大。另外,用于人IgG检测的免疫测定性能表明荧光微球表面上的羧基促进生物分子的有效附着,因此它们可以进一步应用于快速分离和多重生物分子测定。

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