首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Myoglobin in polyacrylamide hydrogel films: direct electrochemistry and electrochemical catalysis
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Myoglobin in polyacrylamide hydrogel films: direct electrochemistry and electrochemical catalysis

机译:聚丙烯酰胺水凝胶薄膜中的肌红蛋白:直接电化学和电化学催化

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摘要

Electrochemical behavior of myoglobin (Mb) incorporated in polyacrylamide (PAM) hydrogen films cast on pyrolytic graphite (PG) electrodes were investigated. Mb-PAM film electrodes showed a pair of well-defined and nearly reversible cyclic voltammetric peakds for Mb Fe(III)/Fe(II) redox couple at about -0.27 (vs. SCE) min pH 5.5 buffers. The electron exchange of Mb with PG electrodes was greatly enhanced in PAM films. The apparent heterogeneous electron transfer rate constant (k_s) and formal potential E deg min) were estimated by fitting the data of square wave voltammetry (SWV) with non-linear regression analysis. The formal potential of Mb-PAM films shifted linearly with pH with a slope of -0.52 V, showing the electron transfer was accompanied by a single-proton transportation. Positions of Soret absorbance band of Mb-PAM films suggest that Mb Maintains its secondary structure similar to its native state in the films in the medium pH range. Oxygen, trichloroacetic acid secondary structure similar to its native state in the films in the medium pH range. Oxygen, trichloroacetic acid (TCA) and nitrite were catalytically reduced by Mb-PAM film electrodes with significant lowering of overpotential. Potential application of Mb-PAM films as biosensors to monitor some substrates was proposed.
机译:研究了在热解石墨(PG)电极上浇铸的聚丙烯酰胺(PAM)氢膜中掺入的肌红蛋白(Mb)的电化学行为。 Mb-PAM膜电极在最低pH 5.5缓冲液中约有-0.27(vs. SCE),显示了一对Mb Fe(III)/ Fe(II)氧化还原对的定义明确且几乎可逆的循环伏安峰。 PAM膜中Mb与PG电极的电子交换大大增强。通过将方波伏安法(SWV)的数据与非线性回归分析进行拟合,估算了表观异质电子传递速率常数(k_s)和形式势E deg min)。 Mb-PAM膜的形式势随pH线性变化,斜率为-0.52 V,表明电子转移伴随着单质子迁移。 Mb-PAM膜的Soret吸收带的位置表明,在中等pH范围内,Mb在膜中保持类似于其天然状态的二级结构。氧气,三氯乙酸的二级结构在中等pH范围内与薄膜中的天然状态相似。 Mb-PAM膜电极可催化还原氧气,三氯乙酸(TCA)和亚硝酸盐,并显着降低过电势。提出了将Mb-PAM膜作为生物传感器来监测某些基材的潜在应用。

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