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Kraton based polymeric nanocomposite bioanode for the application in a biofuel cell

机译:基于Kraton基础聚合物纳米复合材料,用于生物燃料细胞中的应用

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The objective of this work is to introduce a nanocomposite based bioanode for biofuel cell application. The asprepared Kraton/MWCNTs nanocomposite was used as a current enhancer and ferritin (Frt) as a mediator between glucose oxidase (GOx) and the electrode surface. The hybrid anode achieved enzymatic oxidation of glucose by the nanocomposite reflecting an efficient energy conversion from glucose. The resulting Kraton/MWCNTs/Frt/GOx bioande exhibited good catalytic activity towards glucose oxidation along with excellent stability. The maximum current density attained by the bioanode is 1.14 mA cm(-2) at the optimum glucose concentration of 60 mM. This enzymatic strategy can be employed to develop other polysaccharide or oligosaccharide fuel cells in which glucose oxidation is involved.
机译:这项工作的目的是引入基于纳米复合材料的生物燃料电池应用的生物偶联。 诸如葡萄糖氧化酶(GOX)和电极表面之间的介体,用作电流增强剂和铁蛋白(Frt蛋白(Frt蛋白(Frt蛋白)和铁蛋白(Frt蛋白)。 通过纳米复合材料反射从葡萄糖的有效能量转化的纳米复合材料实现杂种阳极的酶促氧化。 得到的kraton / mwcnts / frt / gox bioande表现出良好的催化活性,促使葡萄糖氧化以及优异的稳定性。 由Bioanode获得的最大电流密度以最佳的葡萄糖浓度为60mm为1.14 mA cm(-2)。 可以使用这种酶促策略来开发其他多糖或寡糖燃料电池,其中涉及葡萄糖氧化。

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