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Voltammetric study of insoluble 4-pyridyl-terminated surfactant binary-component films prepared by multiple horizontal touching method on a Au(1 1 1) electrode

机译:多重水平触摸法在au(111)电极上制备不溶性4-吡啶基封端的表面活性剂二元成分薄膜的伏安法研究

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摘要

Potential dependent behaviors and structures of binary-component bilayers and multiple layers of two different water-insoluble 4-pyridyl-terminated surfactants (C15--O--Py and C15--(Cdouble bond; length as m-dashO)--Py, see Fig. 1) on a Au(1 1 1) electrode were investigated by voltammetric techniques. Film preparation was based on repetitive horizontal touching of the electrode to the spread film of the surfactants at a gas/water interface. When bilayer formation was made by sequential touching to the neat spread films of the two different surfactants, the resultant bilayer structure was always of Au(1 1 1)/C15--O--Py/C15--(Cdouble bond; length as m-dashO)--Py, being independent of whether the first touching was made with C15--O--Py or C15--(Cdouble bond; length as m-dashO)--Py. This reflects the stronger affinity of C15--O--Py for the electrode surface, which works dominantly over mixing. When multiple touching was made to the spread film of two-component mixture at a given mixture ratio, the resultant first layer appeared a C15--O--Py monolayer as long as its monolayer amount was supplied. Further increase in the number of the multiple touchings to the mixed spread film resulted in the formation of C15--O--Py bilayer in the bilayer thickness region of the film. Implications of these results were discussed in regards to the structures and properties of the films. When binary-component bilayers and multi-layers are prepared by horizontal touching methods such as a Langmuir--Schaefer (LS) technique, care must be taken to the fact that the resultant film structure does not always turn out as the procedural deposition order.
机译:两种不同水不溶性4-吡啶基封端的表面活性剂(C15--O--Py和C15-(C双键;长度为m-dashO)-Py的二元组分双层和多层的电位依赖性行为和结构,见图1)在Au(1 1 1)电极上通过伏安技术进行了研究。膜的制备基于在水/气界面上电极与表面活性剂铺展膜的反复水平接触。当通过依次接触两种不同表面活性剂的整洁铺展膜而形成双层时,所得双层结构始终为Au(1 1 1)/ C15--O--Py / C15-(C双键;长度为m-dashO)-Py,与第一次触摸是使用C15--O--Py还是C15-(C双键;长度为m-dashO)-Py无关。这反映出C15--O--Py对电极表面的亲和力更强,主要在混合过程中起作用。当以给定的混合比对两组分混合物的涂膜进行多次接触时,只要提供其单层量,所得的第一层就呈现出C15-O-Py单层。与混合涂抹膜的多次接触次数的进一步增加导致在膜的双层厚度区域中形成C15-O-Py双层。讨论了这些结果对薄膜结构和性能的影响。当通过水平接触方法(例如Langmuir-Schaefer(LS)技术)制备二元组分双层和多层膜时,必须注意以下事实,即所得的膜结构并不总是以程序沉积顺序出现。

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