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Fabrication and characterization of buckypaper-based nanostructured electrodes as a novel material for biofuel cell applications

机译:基于巴基纸的纳米结构电极的制备和表征,作为生物燃料电池应用的新型材料

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摘要

The fabrication process of buckypapers (BPs) made from stable suspensions of as-received or functionalized multi-walled carbon nanotubes (MWCNTs) with high purity (97.5 wt%, Baytubes), their characterization and their utilization towards novel biofuel cell electrode applications are reported. The BPs can vary in thickness between 1 μm and 200 μm, are mechanically robust, flexible, stable in solvents, possess high meso-porosities as well as high apparent electrical conductivities of up to 2500 S m~(-1). Potentiodynamic measurements of biocathodes based on bilirubin oxidase (BOD)-decorated BPs for the oxygen reduction reaction (ORR) in neutral media (phosphate buffer solution) containing glucose indicate that BP electrodes based on functionalized MWCNTs (fBPs) perform better than BP electrodes of as-received MWCNTs and have high potential as an effective electrode material in biofuel cells and biosensors.
机译:报告了由原态或功能化的高纯度多壁碳纳米管(MWCNT)的稳定悬浮液制成的巴基纸(BPs)的制备工艺,其表征及其在新型生物燃料电池电极应用中的用途,其纯度高(97.5 wt%,Baytubes)。 。 BP的厚度可以在1μm和200μm之间变化,机械强度高,柔韧性好,在溶剂中稳定,具有高介孔率以及高达2500 S m〜(-1)的高表观电导率。基于胆红素氧化酶(BOD)修饰的BP在含葡萄糖的中性介质(磷酸盐缓冲溶液)中用于氧还原反应(ORR)的生物阴极的电位动力学测量表明,基于功能化MWCNT(fBP)的BP电极性能优于BP的BP电极。碳纳米管被广泛接受,具有很高的潜力,可作为生物燃料电池和生物传感器中的有效电极材料。

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