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首页> 外文期刊>Electrochimica Acta >Different synthesis methods allow to tune the permeability and permselectivity of dopamine-melanin films to electrochemical probes
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Different synthesis methods allow to tune the permeability and permselectivity of dopamine-melanin films to electrochemical probes

机译:不同的合成方法可以调节多巴胺-黑色素膜对电化学探针的渗透性和选择性

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摘要

Different methods to prepare melanin films by dopamine oxidation are compared with respect to their permeability to electrochemical probes being either neutral or carrying a positive or a negative charge. To examine charge-dependence of the permeability differently charged probes of similar size (hexaamineruthenium, ferrocenemethanol and hexacyanoferrate) are employed. We deliberately not investigated the permeability of metal cations through the melanin films owing to their possible complexation by the catechol groups of melanin. The films prepared by solution oxydation methods (O_2 or Cu~(2+) as oxidants) are impermeable to hexacyanoferrate as soon as their thickness reaches 5-10nm but remain permeable to hexaamineruthenium and ferrocenemethanol up to thickness reaching 25-40 nm before becoming also impermeable. The melanin films prepared by electrochemical deposition display a marked difference; they remain permeable to hexacyanoferrate up to 35 nm in thickness and to hexaamineruthenium and ferrocenemethanol up to the maximal thickness that can be reached by this deposition method. When the maximal film thickness of 45 nm is reached the film becomes also impermeable to these two redox probes. These results are explained on the basis of structural differences of the melanin films at the molecular level. The permselectivity of the melanin coatings is related to their negative surface charge density at the working pH of 7.5.
机译:比较了通过多巴胺氧化制备黑色素膜的不同方法,这些方法对中性或带有正电荷或负电荷的电化学探针的渗透性比较。为了检查渗透率的电荷依赖性,使用了大小相似的带不同电荷的探针(六胺钌,二茂铁甲醇和六氰合铁酸盐)。由于金属阳离子可能被黑色素的儿茶酚基团络合,因此我们故意不研究金属阳离子通过黑色素膜的渗透性。通过溶液氧化方法制备的薄膜(O_2或Cu〜(2+)作为氧化剂)在厚度达到5-10nm时对六氰合铁酸盐不渗透,但在达到25-40 nm之前仍对六胺钌和二茂铁甲醇具有渗透性。不可渗透的。通过电化学沉积制备的黑色素膜表现出明显的差异;它们对于高达35 nm的六氰合铁酸盐和六胺钌和二茂铁甲醇仍具有渗透性,直至该沉积方法可以达到的最大厚度。当达到最大膜厚45 nm时,这两个氧化还原探针也变得不可渗透。这些结果是在分子水平上基于黑色素膜的结构差异来解释的。黑色素涂层的选择渗透性与其在工作pH值为7.5时的负表面电荷密度有关。

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