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将金纳米颗粒引入肌红蛋白-全氟磺酸膜以用于直接电化学应用。

Introduction of gold nanoparticles into myoglobin-Nafion film for direct electrochemistry application.

作者信息

Xie Wenting, Kong Linlin, Kan Meixiu, Han Dongmei, Wang Xueji, Zhang Hui-Min

机构信息

School of Science, Beijing Institute of Technology, Beijing 100081, China.

出版信息

J Nanosci Nanotechnol. 2010 Oct;10(10):6720-4. doi: 10.1166/jnn.2010.2544.

Abstract

An effective myoglobin-Nafion film is prepared by introducing gold nanoparticles in through a simple procedure by ion-exchange combined with electrochemical reduction. Gold nanoparticles are highly dispersed in myoglobin-Nafion film with an average size of 2.3 +/- 0.2 nm. The electrochemical behavior of myoglobin entrapped in the film has been carefully investigated with cyclic voltammetry. The results show that the introduction of gold nanoparticles into myoglobin-Nafion film makes the direct electron transfer of myoglobin efficient. A pair of well-defined redox peaks for myoglobin heme Fe(II)/Fe(III) is observed with a formal potential of -0.150 V in 0.1 M phosphate buffer (pH 7.0). The electrochemical parameters of myoglobin in the composite film are further calculated with the results of the electron-transfer rate constant (k(s)) as 0.93 s(-1) and the charge transfer coefficient (alpha) as 0.69. The experimental results also demonstrate that the immobilized myoglobin retains its electrocatalytic activity for the reduction of hydrogen peroxide and the catalytic reduction peak of myoglobin appear in a linear relationship with H2O2 concentration in the range of 10.0-235.0 microM with correlation coefficient of 0.9970. Thus fabricated Au/Mb/Nafion electrode should give a new approach for developing redox protein or enzyme-based biosensors.

摘要

通过离子交换结合电化学还原的简单程序将金纳米粒子引入,制备了一种有效的肌红蛋白-全氟磺酸膜。金纳米粒子高度分散在肌红蛋白-全氟磺酸膜中,平均尺寸为2.3±0.2 nm。用循环伏安法仔细研究了膜中包埋的肌红蛋白的电化学行为。结果表明,将金纳米粒子引入肌红蛋白-全氟磺酸膜中可使肌红蛋白的直接电子转移高效进行。在0.1 M磷酸盐缓冲液(pH 7.0)中观察到肌红蛋白血红素Fe(II)/Fe(III)的一对明确的氧化还原峰,形式电位为-0.150 V。根据电子转移速率常数(k(s))为0.93 s(-1)和电荷转移系数(α)为0.69的结果,进一步计算了复合膜中肌红蛋白的电化学参数。实验结果还表明,固定化的肌红蛋白保留了其对过氧化氢还原的电催化活性,并且肌红蛋白的催化还原峰与10.0 - 235.0 microM范围内的H2O2浓度呈线性关系,相关系数为0.9970。如此制备的Au/Mb/全氟磺酸电极应为开发基于氧化还原蛋白或酶的生物传感器提供一种新方法。

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