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首页> 外文期刊>Analytical chemistry >PREPARATION AND AMPEROMETRIC GLUCOSE SENSITIVITY OF COVALENTLY BOUND GLUCOSE OXIDASE TO (2-AMINOETHYL)FERROCENE ON AN AU ELECTRODE
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PREPARATION AND AMPEROMETRIC GLUCOSE SENSITIVITY OF COVALENTLY BOUND GLUCOSE OXIDASE TO (2-AMINOETHYL)FERROCENE ON AN AU ELECTRODE

机译:价电极上共价键葡萄糖氧化酶对(2-氨基乙基)二茂铁的制备及其对葡萄糖的敏感性

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摘要

A multilayer film consisting of glucose oxidase (GOx) and (2-aminoethyl)ferrocene (2-AF) as an electron mediator has been prepared on an Au electrode with the use of glutaraldehyde as a cross-linking agent. The amount of GOx and 2-AF deposited on the electrode is varied by changing the concentration of 2-AF relative to that of GOx in the preparation bath, and the highest deposition is obtained at an optimum concentration of 2-AF. Interestingly, the molar ratio of 2-AF to GOx in the film is similar to 10, independent of relative compositions of 2-AF to GOx in the preparation bath. The prepared electrode exhibits fast amperometric responses to glucose, its sensitivity being almost proportional to the amount of the immobilized GOx. Kinetic studies employing voltammetry and rotating disk electrode measurements suggest that the reaction rate is controlled by glucose oxidation by GOx and/or the electron mediation of 2-AF rather than diffusion of glucose in the film.
机译:使用戊二醛作为交联剂,在Au电极上制备了由葡萄糖氧化酶(GOx)和(2-氨乙基)二茂铁(2-AF)作为电子介体的多层膜。相对于制备浴中GOx的浓度,通过改变2-AF的浓度可以改变电极上沉积的GOx和2-AF的量,在2-AF的最佳浓度下可以获得最高的沉积。有趣的是,薄膜中2-AF与GOx的摩尔​​比与10相似,与制备浴中2-AF与GOx的相对组成无关。制备的电极对葡萄糖表现出快速的安培响应,其灵敏度几乎与固定的GOx量成正比。使用伏安法和旋转盘电极测量的动力学研究表明,反应速率受GOx氧化葡萄糖和/或2-AF的电子介导控制,而不是由葡萄糖在膜中的扩散控制。

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