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Enhanced performance of electrospun carbon fibers modified with carbon nanotubes: promising electrodes for enzymatic biofuel cells

机译:碳纳米管改性的电纺碳纤维的增强性能:用于酶促生物燃料电池的有希望的电极

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摘要

New nanostructured electrodes, promising for the production of clean and renewable energy in biofuel cells, were developed with success. For this purpose, carbon nanofibers were produced by the electrospinning of polyacrylonitrile solution followed by convenient thermal treatments (stabilization followed by carbonization at 1000, 1200 and 1400°C), and carbon nanotubes were adsorbed on the surfaces of the fibers by a dipping method. The morphology of the developed electrodes was characterized by several techniques (SEM, Raman spectroscopy, electrical conductivity measurement). The electrochemical properties were evaluated through cyclic voltammetry, where the influence of the carbonization temperature of the fibers and the beneficial contribution of the carbon nanotubes were observed through the reversibility and size of the redox peaks of K3Fe.CN/6 versus Ag/AgCl. Subsequently, redox enzymes were immobilized on the electrodes and the electroreduction of oxygen to water was realized as a test of their efficiency as biocathodes. Due to the fibrous and porous structure of these new electrodes, and to the fact that carbon nanotubes may have the ability to promote electron transfer reactions of redox biomolecules, the new electrodes developed were capable of producing higher current densities than an electrode composed only of electrospun carbon fibers.
机译:成功开发出了有望在生物燃料电池中产生清洁和可再生能源的新型纳米结构电极。为此目的,通过将聚丙烯腈溶液电纺丝并随后进行方便的热处理(稳定化,然后在1000、1200和1400°C进行碳化)来生产碳纳米纤维,并通过浸渍方法将碳纳米管吸附在纤维表面上。通过几种技术(SEM,拉曼光谱,电导率测量)对显影电极的形态进行了表征。通过循环伏安法评估电化学性能,其中通过K3Fe.CN/6相对于Ag / AgCl的氧化还原峰的可逆性和大小观察了纤维碳化温度的影响和碳纳米管的有益贡献。随后,将氧化还原酶固定在电极上,并实现了氧气向水的电还原,以测试其作为生物阴极的效率。由于这些新电极的纤维和多孔结构,以及碳纳米管可能具有促进氧化还原生物分子的电子转移反应的能力,因此开发的新电极比仅由电纺丝构成的电极能够产生更高的电流密度。碳纤维。

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