首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Functional Interface of Ferric Ion Immobilized on Phosphonic Acid Terminated Self-Assembled Monolayers on a Au Electrode for Detection of Hydrogen Peroxide
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Functional Interface of Ferric Ion Immobilized on Phosphonic Acid Terminated Self-Assembled Monolayers on a Au Electrode for Detection of Hydrogen Peroxide

机译:铁电极上固定在磷酸终止的自组装单分子膜上的铁离子的功能界面,用于检测过氧化氢

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It is reported that inorganic ferric ion immobilized onto a phosphonic acid terminated functional interface can communicate an electron with the electrode and its electrochemistry is very similar to that of the enzymes (proteins) containing heme groups (such as microperoxidase, horseradish peroxidase, hemoglobin, and myoglobin). For example, its formal potential (E~0')-is very close to that of the above-mentioned enzymes (proteins) in neutral solution; analogous to the direct electrochemistry of enzymes (proteins), the formal potential and electron-transfer rate of the immobilized inorganic ferric ion show a strong dependence on solution pH in cyclic voltammetry measurements. In comparison to the traditional enzyme (proteins)-based electrochemical biosensors, the ferric ion modified electrode shows more prominent electrocatalytic activity toward the reduction of hydrogen peroxide due to its high loading, fast electron-transfer rate, and excellent selection toward the reduction of hydrogen peroxide. Importantly, the iron ion, as an inorganic material, is very stable in high temperature and economical to produce. Therefore, the kind of iron ion modified electrode can be used to construct a new generation of biosensors with high performance, and it is very hopeful to substitute for enzyme-based biosensors for detection of hydrogen peroxide.
机译:据报道,固定在膦酸封端的功能界面上的无机铁离子可以使电子与电极通讯,其电化学与含血红素基团(如微过氧化物酶,辣根过氧化物酶,血红蛋白和肌红蛋白)。例如,其形式势(E〜0')非常接近于中性溶液中上述酶(蛋白质)的形式势;与酶(蛋白质)的直接电化学类似,固定的无机铁离子的形式势和电子传递速率在循环伏安法测量中显示出对溶液pH的强烈依赖性。与传统的基于酶(蛋白质)的电化学生物传感器相比,铁离子修饰的电极由于其高负载,快速的电子传输速率以及对还原氢的出色选择,对减少过氧化氢表现出更加突出的电催化活性。过氧化物。重要的是,作为无机材料的铁离子在高温下非常稳定并且生产经济。因此,这种铁离子修饰电极可用于构建高性能的新一代生物传感器,非常有希望替代基于酶的生物传感器来检测过氧化氢。

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