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首页> 外文期刊>Advanced Science Letters >Synthesis and Optical Properties of Surface Stabilized Gold Nanoparticles with Poly(Vinyl Pyrrolidone) Polymer Molecules of a Nanofluid
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Synthesis and Optical Properties of Surface Stabilized Gold Nanoparticles with Poly(Vinyl Pyrrolidone) Polymer Molecules of a Nanofluid

机译:纳米流体的聚(乙烯基吡咯烷酮)聚合物分子表面稳定的金纳米粒子的合成和光学性质

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摘要

Surface stabilized gold nanoparticles (Au-NPs) and self-assembly of them offer tailored functional properties useful for biological reactions, biodiagnostic assays, and other applications. This paper describes a simple synthesis of Au-NPs from a sonication assisted caloric dissociation reaction of a gold salt HAuCl_4·3H_2O in presence of reactive polymer molecules such as poly(vinyl pyrrolidone) (PVP) in form of a nanofluid in water. Size of the Au-NPs, ranging from 10 to 110 nm, is easily controlled by varying the content of PVP molecules (0.01-10 g/dL) relative to an aqueous salt precursor. Reactions carried out in a batch of 5.1 mL sample demonstrate that the PVP molecules not only tailor the basic size and shape of resulting Au-NPs but also two-dimensional assembles of them that develop in part of the reaction. Light-absorption (460-960 nm) in Au-NPs in these nanofluids is influenced by content of PVP molecules used during the reaction. A maximum absorption extinction coefficient 1.1 × 10~4 L-mol~(-1)cm~(-1) is achieved in 1.0 g/dL PVP with 0.001 mM Au-NPs. An intense light emission 280-560 nm is obtained in this sample in combined effects of the surface enhanced light-absorption in Au-NPs and a dielectric surrounding with metal-insulator interfaces. Results are discussed in correlation with shape, size and assemblies in the Au-NPs with a polymer surface layer.
机译:表面稳定的金纳米颗粒(Au-NPs)及其自组装提供了量身定制的功能特性,可用于生物反应,生物诊断测定和其他应用。本文描述了一种金盐HAuCl_4·3H_2O在水中以纳米流体形式存在的反应性聚合物分子(例如聚乙烯吡咯烷酮(PVP))的超声辅助热解离反应的简单合成Au-NPs的方法。通过改变相对于水成盐前体的PVP分子含量(0.01-10 g / dL),可以很容易地控制Au-NP的大小,范围从10到110 nm。在一批5.1 mL样品中进行的反应表明,PVP分子不仅可以调节所得Au-NP的基本大小和形状,还可以在反应的一部分中将其二维组装。这些纳米流体中Au-NP中的光吸收(460-960 nm)受反应过程中使用的PVP分子含量的影响。在具有0.001 mM Au-NPs的1.0 g / dL PVP中获得最大吸收消光系数1.1×10〜4 L-mol〜(-1)cm〜(-1)。在此样品中获得了280-560 nm的强光发射,这是Au-NPs中表面增强的光吸收和金属绝缘体界面周围的电介质共同作用的结果。讨论了与具有聚合物表面层的Au-NPs的形状,大小和组装相关的结果。

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