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Towards Understanding a Distinct Hydrogen Peroxide Electrocatalytic Enhancement Using Surfactant-Based Coatings on Silver

机译:使用基于银基涂层了解不同过氧化氢电催化增强的银

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The detection of hydrogen peroxide has been shown to be very important in recent years due to its role in many industrial applications, as well as in biological reactions. Previously, a commercial silver flake-based ink (PF-410, Acheson), when screen-printed as films to substrate and subsequently coated with surfactant and salt (sodium dodecylbenezene sulphonate (SDBS) and KCl), have been shown to significantly enhance the electrochemical reduction of hydrogen peroxide - up to 80-fold over non-modified films. In this study, an attempt to understand the effect of the silver material within the ink on the catalytic behaviour of the films, as well as the distinct change in behaviour upon modification with surfactant/salt are examined. Factors including Ag morphology, presence of dispersant and Ag material supplier are all investigated to assess their effects on the electrocatalytic breakdown of hydrogen peroxide. To do this, a range of inks were formulated from various Ag materials, e.g., flakes and nanoparticles of various sizes. These inks were then cast as coatings onto conventional glassy carbon (GC) electrodes, and their electrocatalytic behaviours, both as modified and non-modified films were studied.
机译:由于其在许多工业应用中的作用以及生物反应中,近年来,过氧化氢的检测已被证明是非常重要的。以前,已经显示出作为薄膜和随后用表面活性剂和盐(十二烷基苯磺酸钠(SDB)和KCl)涂覆的丝网印刷作为薄膜并随后涂覆的基于膜和盐(SDB)和KCl)。显着增强电化学减少过氧化氢 - 过至80倍的未改性膜。在该研究中,试图了解墨水中银材料在膜的催化行为中的影响,以及用表面活性剂/盐改性后行为的不同变化。所有因素在内的Ag形态,分散剂和Ag材料供应商的存在都被调查,以评估它们对过氧化氢的电催化分解的影响。为此,从各种Ag材料,例如各种尺寸的薄片和纳米粒子配制了一系列油墨。然后将这些油墨作为涂层作为常规玻璃碳(GC)电极,以及它们的电催化行为,既是改性的和未改性薄膜。

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