首页> 外文期刊>IEEE sensors journal >A Novel and Enhanced Membrane-Free Performance of Glucose/O2 Biofuel Cell, Integrated With Biocompatible Laccase Nanoflower Biocathode and Glucose Dehydrogenase Bioanode
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A Novel and Enhanced Membrane-Free Performance of Glucose/O2 Biofuel Cell, Integrated With Biocompatible Laccase Nanoflower Biocathode and Glucose Dehydrogenase Bioanode

机译:一种新颖且增强的葡萄糖/ O2生物燃料细胞的无膜性能,与生物相容性漆纳米刮液生物探伤和葡萄糖脱氢酶生物偶联集成

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In this research, a novel glucose/O-2 biofuel cell was developed with glucose dehydrogenase bioande and laccase biocathode. For the preparation of a bioanode, glassy carbon electrode was modified in a layer by layer structure of graphene oxide nano-sheets, glucose dehydrogenase, and nicotine amide adenine dinucleotide by electrostatic affinities and the capping layer consist of glutaraldehyde, bovine serum albumin and glucose dehydrogenase. The proposed system depicted a high bioelectrocatalytic activity toward glucose oxidation and the oxidation commenced at -0.30 V (vs. Ag/ AgCl). For implementation in a biofuel cell, a biocompatible enzyme-based cathode was developed. Therefore, laccase nanoflowers were immobilized onto gold nanoparticles, which were electrodeposited on a gold electrode and polydopamine biofilm was employed to keep the immobilized laccase nanoflowers in place. The biocathode illustrated a high electrocatalytic activity toward oxygen reduction reaction with a direct electron transfer at a positive potential of +0.61 V (vs. Ag/AgCl). The prepared bioelectrodes were integrated into a glucose/O-2 biofuel cell system, without a membrane and the performance and the stability of the biofuel cell were evaluated in vitro. The obtained operating circuit voltage and maximum current densities were 0.86 V and 1.11 mA center dot cm(-2) and maximum power density of 0.40 mW center dot cm(-2) was achieved at 0.67 V (vs. Ag/AgCl). The output power of the biofuel cell is almost persistent after 24 days of sustained operation. The achieved results suggest that the proposed modifications provide a high-performance and very stable biofuel cell for application in implantable medical devices.
机译:在该研究中,用葡萄糖脱氢酶生物组合和漆酶生物病变开发了一种新型葡萄糖/ O-2生物燃料电池。为了制备生物偶联的制备,通过静电亲和力的氧化烯纳米片,葡萄糖脱氢酶和尼古丁酰胺腺嘌呤二核苷酸在层中进行玻璃状碳电极。通过静电,封端层由戊二醛,牛血清白蛋白和葡萄糖脱氢酶组成。所提出的系统描绘了对葡萄糖氧化的高生物电催化活性,氧化在-0.30V(Vs.Ag / AgCl)。为了在生物燃料细胞中的实施中,开发了一种生物相容性酶的阴极。因此,将漆碱纳米锤固定在金纳米颗粒上,在金电极上被电沉积在金电极上,并且使用聚二氨基氨基生物膜将固定化的漆碱纳米锭剂保持在适当位置。生物病行阐述了氧化氧还原反应的高电催化活性,其在+0.61V的正电位下的直接电子转移(对Ag / AgCl)。将制备的生物电极集成到葡萄糖/ O-2生物燃料电池系统中,没有膜,体外评价生物燃料电池的性能和稳定性。所获得的操作电路电压和最大电流密度为0.86V,1.11 mA中心点CM(-2),最大功率密度为0.40mW中心点CM(-2),以0.67V(Vs.Ag / AgCl)实现。在持续运行24天后,生物燃料电池的输出功率几乎持久。达到的结果表明,所提出的修改提供了一种高性能和非常稳定的生物燃料电池,用于在可植入的医疗装置中应用。

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