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Soybean straw biomass-derived Fe–N co-doped porous carbon as an efficient electrocatalyst for oxygen reduction in both alkaline and acidic media

机译:大豆秸秆生物量衍生的Fe-n共掺杂多孔碳作为碱性和酸性介质的氧还原的有效电催化剂

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The development of highly efficient oxygen reduction reaction (ORR) catalysts is of great significance for the large-scale commercialization of fuel cells. In this work, honeycomb-like Fe–N co-doped porous carbon materials (Fe–N–PC) were prepared through a facile one-step pyrolysis strategy using soybean straw biomass as the precursor. The obtained Fe–N–PC catalyst exhibits excellent ORR performance with an onset potential of 0.989 V and a half-wave potential of 0.854 V in alkaline conditions, which positively shift only by 5 mV and 27 mV, respectively than those of the commercial Pt/C catalyst. Furthermore, the onset potential and the half-wave potential of the Fe–N–PC catalysts are up to 0.886 V and 0.754 V, respectively, under acidic conditions, which are superior to those of many other Fe, N-doped electrocatalysts. The ORR process can be regarded as a four-electron transfer process based on RRDE measurements. Moreover, the Fe–N–PC catalyst also shows greater stability and satisfactory methanol tolerance than the Pt/C catalyst. The superior electrocatalytic performance of Fe–N–PC may be attributed to the abundant nanoporous structure, large BET surface area, and Fe–N co-doping, which provide abundant and highly efficient active sites.
机译:高效氧还原反应(ORR)催化剂的发展对于燃料电池的大规模商业化具有重要意义。在这项工作中,通过使用大豆秸秆生物质作为前体,通过容易的一步热解策略制备蜂窝状的Fe-N共掺杂多孔碳材料(Fe-N-PC)。所得Fe-N-PC催化剂具有优异的ORR性能,发病潜力为0.989V,碱性条件下的半波电位为0.854 V,其仅比商业PT的潜力显着偏移5mV和27 mV / c催化剂。此外,在酸性条件下,Fe-N-PC催化剂的发病电位和半波电位分别高达0.886V和0.754V,其优于许多其他Fe,N掺杂电催化剂。 ORR过程可以被视为基于RRDE测量的四电子传输过程。此外,Fe-N-PC催化剂还显示出比Pt / C催化剂更大的稳定性和令人满意的甲醇耐受性。 Fe-N-PC的卓越电催化性能可能归因于丰富的纳米多孔结构,大的BET表面积和Fe-N共掺杂,提供丰富和高效的活性位点。

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