Faculty of Biology and Soil Sciences, Kazan State University, Kazan, Tatarstan, Russia.
Langmuir. 2010 Apr 6;26(7):5153-9. doi: 10.1021/la9036309.
The composite silver and gold nanoparticles (AgNPs and AuNPs) coated with nonionic amphiphilic block copolymers (Pluronics L121, F68, or F127) are prepared by their adsorption under critical micelle concentrations. It is found that Pluronics bind to the surface of metal NPs as a very thin film by the hydrophobic association through poly(propylene oxide) block of the copolymers. The modification increases the colloidal stability of NPs with increasing hydrophilic-lipophilic balance of Pluronics in the order of L121, F127, and F68. In order to investigate the potentials of polymer coated noble metal NPs as surface-enhanced Raman spectroscopy (SERS) probes, fluorescent dyes and doxorubicin are used as model compounds. It is found that Pluronic component promotes the adsorption of these compounds on the composite NPs resulting in a considerable increase of Raman signal. This effect is attributed to increased concentration of the analyte molecules on the composite surface due to the hydrophobic and charge-charge interactions between the analytes and the Pluronic coat, and the stabilization of NPs by poly(ethylene oxide) blocks. The copolymer coated AgNPs show higher SERS activity than the counterparts prepared with AuNPs. Among the prepared composites, the AgNPs modified with Pluronic F127 containing extended poly(propylene oxide) and poly(ethylene oxide) blocks exhibit maximal Raman activity using rhodamine 6G (Rh6G) with a EF of 9.04 x 10(6). The results show that the developed Pluronic-based SERS probes can be used for sensitive and selective analysis of organic analytes.
复合银和金纳米粒子(AgNPs 和 AuNPs)被吸附在临界胶束浓度下的非离子两亲嵌段共聚物(Pluronics L121、F68 或 F127)上。研究发现,Pluronics 通过聚合物的聚丙二醇嵌段通过疏水缔合作为非常薄的膜结合到金属 NPs 的表面上。随着 Pluronics 的亲水-亲脂平衡的增加,修饰增加了 NPs 的胶体稳定性,顺序为 L121、F127 和 F68。为了研究聚合物包覆的贵金属 NPs 作为表面增强拉曼光谱(SERS)探针的潜力,荧光染料和阿霉素被用作模型化合物。研究发现,Pluronic 成分促进了这些化合物在复合 NPs 上的吸附,导致拉曼信号有了相当大的增强。这种效应归因于分析物分子在复合表面上的浓度增加,这是由于分析物与 Pluronic 涂层之间的疏水和电荷-电荷相互作用,以及聚氧乙烯嵌段对 NPs 的稳定作用。与使用 AuNPs 制备的对应物相比,共聚物包覆的 AgNPs 显示出更高的 SERS 活性。在所制备的复合材料中,使用具有扩展的聚丙二醇和聚氧乙烯嵌段的 Pluronic F127 修饰的 AgNPs 对罗丹明 6G(Rh6G)表现出最大的拉曼活性,EF 为 9.04 x 10(6)。结果表明,开发的基于 Pluronic 的 SERS 探针可用于有机分析物的灵敏和选择性分析。
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