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首页> 外文期刊>Electrochimica Acta >Electrocatalytic reduction of nitric oxide and other substrates on hydrogel triblock copolymer Pluronic films containing hemoglobin or myoglobin based on protein direct electrochemistry
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Electrocatalytic reduction of nitric oxide and other substrates on hydrogel triblock copolymer Pluronic films containing hemoglobin or myoglobin based on protein direct electrochemistry

机译:基于蛋白质直接电化学法在水凝胶三嵌段共聚物上的一氧化氮和其他底物的电催化还原含血红蛋白或肌红蛋白的Pluronic膜

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Protein-Pluronic film modified electrodes were constructed by casting the mixture of hemoglobin (Hb) or myoglobin (Mb) and triblock copolymer poly(ethylene oxide){sub}100-poly(propylene oxide){sub}65-poly(ethylene oxide){sub}100 (Pluronic) solutions onto the surface of pyrolytic graphite (PG) electrodes. A pair of well-defined and nearly reversible CV peaks at about -0.35 V versus SCE in pH 7.0 buffers was observed for protein-Pluronic films, characteristic of the protein heme Fe(III)/Fe(II) redox couples, The films were characterized by scanning electron microscopy (SEM), UV-vis and IR spectroscopy, as well as electrochemistry. The heme proteins were quite stable and retained their near-native structure in Pluronic films. Oxygen, hydrogen peroxide, nitrite and nitric oxide were electrochemically catalyzed by protein-Pluronic films with significant lowering of reduction overpotential. Both nitrite and hydrogen peroxide underwent dismutation in electrocatalysis. The reduction of (NO{sub}2){sup}- and H{sub}2O{sub}2 on protein-Pluronic films was actually the catalytic reduction of their disproportionation products, NO and O{sub}2, respectively. The biocatalytic mechanism of these substrates at protein-Pluronic film electrodes were discussed and speculated.
机译:通过浇铸血红蛋白(Hb)或肌红蛋白(Mb)与三嵌段共聚物聚环氧乙烷{sub} 100-聚环氧丙烷{sub} 65-聚环氧乙烷的混合物构建蛋白质-Pluronic膜修饰电极{sub} 100(Pluronic)溶液到热解石墨(PG)电极的表面上。对于蛋白质-Pluronic薄膜,在pH 7.0缓冲液中观察到一对定义良好且几乎可逆的CV峰,相对于SCE约为-0.35 V,这是蛋白质血红素Fe(III)/ Fe(II)氧化还原对的特征。通过扫描电子显微镜(SEM),紫外可见光谱和红外光谱以及电化学进行表征。血红素蛋白非常稳定,并在Pluronic膜中保留了其近乎天然的结构。蛋白质-Pluronic膜以电化学方式催化氧气,过氧化氢,亚硝酸盐和一氧化氮,显着降低了还原过电位。亚硝酸盐和过氧化氢在电催化中均发生歧化。蛋白-Pluronic薄膜上的(NO {sub} 2){sup}-和H {sub} 2O {sub} 2的还原实际上是它们歧化产物NO和O {sub} 2分别的催化还原。讨论并推测了这些底物在蛋白质-Pluronic膜电极上的生物催化机理。

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