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Intermatrix synthesis of Ag, AgAu and Au nanoparticles by the galvanic replacement strategy for bactericidal and electrocatalytically active nanocomposites

机译:通过用于杀菌和电催化活性纳米复合材料的电化学替代策略的Intermatrix合成ag,agau和au纳米颗粒

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摘要

The intermatrix synthesis (IMS) technique has proven to be an environmentally friendly methodology for the preparation of functional metal nanoparticles (FMNPs) on different reactive matrices. The distribution of these FMNPs is an important feature to control depending on the final application of the nanocomposite: bactericide assays for water treatment, heterogeneous catalysis, electrocatalytic effects and others. IMS offers the feasibility to control the FMNP distribution, taking into account the adequacy of the ion exchange form of the reactive matrix and the chemical nature of the reducing agent used for the synthesis (the Donnan effect). Consequently, AgAu–FMNPs and Au–FMNPs containing nanocomposites have been prepared by coupling a galvanic replacement stage to IMS, with tested bactericide features attributed to the distribution of the nanoparticles on the material. In addition, Ag–FMNPs and Au–FMNPs contained on multiwalled carbon nanotubes have been synthesized and used as conducting nanofillers for the development of amperometric nanocomposite sensors based on epoxy resin. The incorporation of these FMNPs into the nanocomposite sensor has shown significant electrocatalytic effects, obtaining enhanced electrochemical and analytical parameters, such as higher signal-to-noise ratios as well as better detection limits, quantification limits and sensitivities for the oxidation of ascorbic acid in water, which was used as a model analyte.
机译:基质间合成(IMS)技术已被证明是一种在不同反应性基质上制备功能性金属纳米颗粒(FMNP)的环保方法。这些FMNP的分布是根据纳米复合材料的最终应用来控制的重要特征:用于水处理的杀菌剂测定,非均相催化作用,电催化作用等。考虑到反应性基质的离子交换形式的充分性以及用于合成的还原剂的化学性质(唐南效应),IMS提供了控制FMNP分布的可行性。因此,通过将电置换阶段与IMS耦合,制备了包含纳米复合材料的AgAu-FMNP和Au-FMNP,并测试了杀菌剂的特性,归因于纳米粒子在材料上的分布。此外,已合成了多壁碳纳米管中包含的Ag-FMNPs和Au-FMNPs,并将其用作导电纳米填料,用于开发基于环氧树脂的电流型纳米复合传感器。将这些FMNP掺入纳米复合传感器已显示出显着的电催化作用,获得了增强的电化学和分析参数,例如更高的信噪比以及更好的检测限,定量限和对水中抗坏血酸氧化的敏感性,用作模型分析物。

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