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Resonance Rayleigh scattering study on the interaction of gold nanoparticles with berberine hydrochloride and its analytical application

机译:金纳米粒子与盐酸小ber碱相互作用的共振瑞利散射研究及其分析应用

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摘要

The interaction of gold nanoparticles with berberine hydrochloride has been studied by using resonance Rayleigh scattering (RRS) spectra. In pH 3.8-5.5 aqueous solution, citrate acid ([H2L2-]) self-assembled on the surface of positively charged gold nanoparticles (average diameter is about 12.0 nm) to form a supermolecular complex with negative charges. By virtue of electrostatic attraction, hydrophobic force and charge transfer, the complex bound with berberine to form complex, which had bigger diameter (35 nm) than gold nanoparticles. The formation of the binding production not only resulted in the red shift of absorption of gold nanoparticles from 518 to 672 nm, but also led to the greatly enhancement of RRS intensity. At the same time, the intensities of second-order scattering (SOS) and frequency-doubling scattering (FDS) were also increased. Under definite condition, the increment of the RRS (Delta I) were proportional to the concentration of berberine. A sensitive and simple method for the determination of berberine based on the RRS technique has been developed. The detection limit (3 sigma) for berberine was 0.40 ng mL(-1) and the quantitative determination range was 1.33-240 ng mL(-1). In this work, the optimum conditions of reaction, the effect of foreign substances and the analytical application had been investigated. (c) 2006 Elsevier B.V. All rights reserved.
机译:金纳米粒子与盐酸小ber碱的相互作用已通过共振瑞利散射(RRS)光谱进行了研究。在pH 3.8-5.5的水溶液中,柠檬酸([H2L2-])在带正电的金纳米颗粒(平均直径约为12.0 nm)上自组装,形成带负电荷的超分子复合物。由于静电吸引,疏水力和电荷转移,配合物与小碱结合形成配合物,其直径(35 nm)比金纳米颗粒大。结合产物的形成不仅导致金纳米颗粒的吸收从518nm向672nm红移,而且导致RRS强度大大提高。同时,二阶散射(SOS)和倍频散射(FDS)的强度也增加了。在一定条件下,RRS的增量(δI)与小碱的浓度成正比。开发了一种基于RRS技术的敏感,简单的小ber碱测定方法。小ber碱的检出限(3 sigma)为0.40 ng mL(-1),定量测定范围为1.33-240 ng mL(-1)。在这项工作中,研究了反应的最佳条件,异物的影响和分析应用。 (c)2006 Elsevier B.V.保留所有权利。

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