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Electro-Induced Covalent Cross-Linking of Chitosan and Formation of Chitosan Hydrogel Films: Its Application as an Enzyme Immobilization Matrix for Use in a Phenol Sensor

机译:壳聚糖的电诱导共价交联和壳聚糖水凝胶膜的形成:其作为用于酚传感器的酶固定基质的应用

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摘要

We report a novel electrochemical method for making covalently cross-linked chitosan films on the surface of a screen printed carbon electrode. In the presence of a freely diffusing ruthenium complex, Ru(bpy)_(2)Cl_(2), soluble chitosan becomes irreversibly cross-linked in response to a reducing potential and subsequently deposits on the electrode surface to form a hydrogel film which shows robustness in harsh acidic conditions. The cross-linked chitosan film presents excellent ability to facilitate the diffusion and electron transfer process of the negatively charged redox couple [Fe(CN)_(6)]~(3-)/[Fe(CN)_(6)]~(4-) at the electrode surface, while its impact on the positively charged redox couple [Ru(NH_(3))_(6)]~(2+)/[Ru(NH_(3))_(6)]~(3+) is minimal. By covalently immobilizing the enzyme tyrosinase in a preformed cross-linked chitosan film via a similar mechanism, a sensitive phenol sensor is constructed with a broad dynamic range. The potential advantages of this method are also discussed.
机译:我们报告了一种新型的电化学方法,用于在丝网印刷碳电极的表面上制备共价交联的壳聚糖膜。在自由扩散的钌络合物Ru(bpy)_(2)Cl_(2)的存在下,可溶性壳聚糖响应于还原电势而不可逆地交联,随后沉积在电极表面形成水凝胶膜,显示在苛刻的酸性条件下的坚固性。交联的壳聚糖膜具有出色的促进带负电的氧化还原对[Fe(CN)_(6)]〜(3-)/ [Fe(CN)_(6)]〜的扩散和电子转移过程的能力。 (4-)在电极表面,同时它对带正电的氧化还原对[Ru(NH_(3))_(6)]〜(2 +)/ [Ru(NH_(3))_(6)]的影响〜(3+)是最小的。通过类似的机制将酪氨酸酶共价固定在预先形成的交联壳聚糖膜中,可以构建具有宽动态范围的敏感酚传感器。还讨论了此方法的潜在优势。

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