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Au/Ag/Au double shell nanoparticles with narrow size distribution obtained by continuous micro segmented flow synthesis

机译:连续微分段流动合成获得尺寸分布窄的Au / Ag / Au双壳纳米粒子

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摘要

In this paper we present a two-step micro continuous flow-through method for synthesizing colloidal dispersions of noble metal core/shell and multishell nanoparticles in aqueous solutions in the presence of cetyltrimethylammonium bromide (CTAB). The synthesis is based on the reduction of the metal salts HAuCl4 and AgNO3 at the surface of seed particles by ascorbic acid. In the micro fluidic system, constant residence times and an effective mixing were achieved by applying the segmented flow principle. The colloidal solutions were analyzed by differential centrifugal sedimentation, UV-vis spectrophotometry, and scanning electron microscopy. The size distribution of the Au/Ag core/shell and multishell nanoparticles synthesized by the micro flow-through technique was very narrow. In case of Au/Ag core/shell nanoparticles, an average diameter of 20 nm with a distribution half width of 3.8 nm, and for Au/Ag/Au multishell nanoparticles an average diameter of 46 nm with a distribution half width of 7.4 nm were obtained. The optical spectra of the particle solutions exhibited drastic changes with the deposition of each additional metal shell. Due to the intense changes in their optical properties, the prepared particles are of interest for future sensing applications as well as for labelling in bioanalytics or as nonlinear optical devices. Furthermore, it is shown that micro reactors are well suited to control the synthesis of complexly structured Au/Ag multishell nanoparticles with a high homogeneity and an extremely narrow size distribution. Especially by applying a micro segmented flow, an improvement of the product quality is achieved because of a high internal segment mixing efficiency and a suppression of residence time distribution.
机译:在本文中,我们提出了在十六烷基三甲基溴化铵(CTAB)存在下,在水溶液中合成贵金属核/壳和多壳纳米粒子的胶体分散液的两步微连续流化方法。合成是基于抗坏血酸还原种子颗粒表面的金属盐HAuCl4和AgNO3。在微流体系统中,通过应用分段流动原理可实现恒定的停留时间和有效的混合。通过差速离心沉降,UV-可见分光光度法和扫描电子显微镜分析胶体溶液。通过微流穿技术合成的Au / Ag核/壳和多壳纳米颗粒的尺寸分布非常窄。对于Au / Ag核/壳纳米颗粒,平均直径为20 nm,分布半宽度为3.8 nm,对于Au / Ag / Au多壳纳米颗粒,平均直径为46 nm,分布半宽度为7.4 nm。获得。颗粒溶液的光谱随着每个附加金属壳的沉积而显示出剧烈的变化。由于其光学性质的剧烈变化,制备的颗粒对于未来的传感应用以及生物分析中的标记或作为非线性光学设备非常重要。此外,已经表明,微型反应器非常适合控制具有高均质性和极窄尺寸分布的复杂结构的Au / Ag多壳纳米颗粒的合成。特别是通过施加微分段流,由于高的内部分段混合效率和抑制了停留时间分布,因此实现了产品质量的提高。

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