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Comparison of chitosan and nafion-chitosan coated bioelectrodes in enzymatic glncose biofnel cells

机译:壳聚糖和Nafion-壳聚糖涂覆生物电磁在酶胶质糖细胞中的比较

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Here we evaluated the performance of enzymatic glucose biofuel cells. The significance of bioelectrodes employed in biofuel cell design is highly dependent on the effective immobilization of enzyme to enable the enzyme to present an orientation that is favorable for direct electron transfer (DET) from the active center of the enzyme to the final current collector. We examined chitosan and nafion-chitosan based coatings on immobilized pyrroloquinoline quinone dependent glucose dehydrogenase (PQQ-GDH) and bilirubin oxidase (BOD) as anodic and cathodic enzymes, respectively. The enzymes were immobilized on multi-walled carbon nanotubes (MWCNTs). The performance of the assembled biofuel cells exhibited interesting operational stability. Operating under DET, the biofuel cell with bioelectrodes coated with chitosan produced the highest power (156 μW) output. PQQ-GDH bioanodes with various enzyme concentrations were evaluated to access their performance and stability. The bioanode with 2.5 mg/ml immobilized PQQ-GDH demonstrated long term stability and generated a maximum power density of 1.6 mW/cm2 in the fuel cell assembly when compared to higher enzyme load concentration (≥ 5 mg/ml PQQ-GDH).
机译:在这里,我们评估了酶葡萄糖生物燃料细胞的性能。生物燃料电池设计中使用的生物电极的意义高度依赖于酶的有效固定,使得酶能够呈现有利于从酶的活性中心到最终集电器的直接电子转移(DET)的取向。我们在固定化的吡咯喹啉醌依赖性葡萄糖脱氢酶(PQQ-GDH)和胆红素氧化酶(BOD)中分别检查了基于壳聚糖和Nafion-壳聚糖的涂层作为阳极和阴极酶。将酶固定在多壁碳纳米管(MWCNT)上。组装的生物燃料细胞的性能表现出有趣的操作稳定性。在DET下运行,生物燃料电池具有涂有壳聚糖的生物电极,产生最高功率(156μW)输出。评价具有各种酶浓度的PQQ-GDH生物核糖以获得其性能和稳定性。具有2.5mg / ml固定的PQQ-GDH的生物潮汐显着长期稳定性,并产生1.6mW / cm的最大功率密度 2 与较高酶负荷浓度(≥5mg/ ml PQQ-GDH)相比时在燃料电池组件中。

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