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Non-chemical approach toward 2D self-assemblies of Ag nanoparticles via cold plasma treatment of substrates

机译:通过基板的冷等离子处理以非化学方法处理Ag纳米粒子的2D自组装

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The nano-modification of selected substrates by means of atmospheric cold plasma treatment was exploited for the two-dimensional (2D) self-assembling of silver nanoparticles (Ag NPs). Such a useful combination of the cold plasma treatment of substrate surface and an immediate easy deposition of Ag NPs creating the 2D self-assemblies on the substrates is published for the first time, to the best of our knowledge. Except for the cold plasma treatment, mainly the following parameters influenced the resulting NP assemblies: the choice of solvent mixture, concentration of Ag NP dispersions, and the deposition technique. The 2D self-assemblies of Ag NPs, providing the same work function as a Ag electrode, were formed on the cold plasma-treated substrates when a drop-casting technique was employed. The possibility of an easy preparation of the Ag NP 2D self-assemblies on substrates without using any chemical agents and/or evaporating chamber could be exploited, e.g.in photovoltaic and light-emitting diode devices.
机译:通过大气冷等离子体处理对选定基板进行的纳米改性被用于银纳米粒子(Ag NPs)的二维(2D)自组装。据我们所知,这是首次对基板表面进行冷等离子体处理,并立即轻松地沉积Ag NPs的有用组合,从而在基板上产生2D自组装。除冷等离子体处理外,以下主要参数会影响所得的NP组件:溶剂混合物的选择,Ag NP分散液的浓度以及沉积技术。当采用滴铸技术时,在冷等离子体处理的基板上形成了具有与Ag电极相同的功函的Ag NP的二维自组装体。例如在光伏和发光二极管装置中,可以利用在不使用任何化学试剂和/或蒸发室的情况下在基板上容易制备Ag NP 2D自组装体的可能性。

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