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Development of high performance of Co/Fe/N/CNT nanocatalyst for oxygen reduction in microbial fuel cells

机译:高性能Co / Fe / N / CNT纳米催化剂在微生物燃料电池中还原氧的研究进展

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In this paper, we synthesized a unique cathode catalyst Co/Fe/N/CNTs with high performance oxygen reduction. Through the pi-stacking force, the cobalt porphyrins (CoTMPP) and iron phthanlocyanine (FePc) were deposited to the carbon nanotubes (CNTs) sidewall. The CoTMPP/FePc functionalized CNTs were used as the precursor to prepare the Co/Fe/N/CNTs based oxygen reduction nanocatalyst through high-temperature pyrolysis. The as-prepared catalyst exhibited higher electrocatalytic activity for the reduction of dioxygen than that of the Co/Fe/N/graphite and commercial Pt/C. The high electrocatalytic activity and good stability for dioxygen reduction made the Co/Fe/N/CNT as a potential candidate for the efficient cathode material in microbial fuel cells (MFCs). The maximum power of the MFC using the Co/Fe/N/CNT as cathode catalyst is 751 mW m(-2), which was 1.5 times larger than the MFC with the commercial Pt/C catalyst under the same condition. Such an approach is useful for the improvement of the cathode performance and to provide the basis for the development of the efficient MFC cathodes.
机译:在本文中,我们合成了具有高性能氧还原作用的独特阴极催化剂Co / Fe / N / CNT。通过pi堆积力,将钴卟啉(CoTMPP)和酞菁铁(FePc)沉积到碳纳米管(CNTs)侧壁上。以CoTMPP / FePc官能化的CNTs为前驱体,通过高温热解制备了Co / Fe / N / CNTs氧还原纳米催化剂。所制备的催化剂显示出比Co / Fe / N /石墨和商业Pt / C更高的用于还原双氧的电催化活性。高的电催化活性和良好的双氧还原稳定性使Co / Fe / N / CNT成为微生物燃料电池(MFCs)中高效阴极材料的潜在候选者。使用Co / Fe / N / CNT作为阴极催化剂的MFC的最大功率为751 mW m(-2),是在相同条件下使用商用Pt / C催化剂的MFC的1.5倍大。这样的方法对于改善阴极性能是有用的,并且为开发有效的MFC阴极提供了基础。

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