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Electrospun Fe, N co-doped porous carbon nanofibers with Fe_4N species as a highly efficient oxygen reduction catalyst for rechargeable zinc-air batteries

机译:Fe_4N物种的电纺铁,氮共掺杂多孔碳纳米纤维,作为可充电锌空气电池的高效氧还原催化剂

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Rational design of highly effective and low-cost oxygen reduction reaction (ORR) electrocatalysts to replace Pt-based catalysts is still a significant challenge for rechargeable zinc-air batteries. Hence, Fe, N co-doped one-dimensional carbon nanofibers with Fe4N species (Fe/N-CNFs) are synthesized through the electrospun technique combining with the "rapid calcination under vacuum" method. Benefitting from the one-dimensional structure obtained by the electrospun technique, the as-synthesized Fe/N-CNFs electrocatalyst with mesoporous exhibits a relatively large specific surface area of 624.12 m(2) g(-1). Notably, the intrinsic activity of Fe4N species as well as the large specific surface area can endow the resulting Fe/N-CNFs with a positive half-wave potential of 0.88 V compared with 20 wt% Pt/C (0.86 V) for ORR. The Fe/N-CNFs also exhibits better long-term stability than 20 wt% Pt/C. Furthermore, the rechargeable zinc-air battery constructed with Fe/N-CNFs as the cathode shows a high open-circuit voltage of 1.51 V, a peak power density of 135 mW cm(-2) and an excellent cycle life for 55 h. The as-synthesized electrocatalyst is promising to replace the precious metal catalysts for rechargeable zinc-air batteries.
机译:对于可充电锌-空气电池,合理设计高效,低成本的氧还原反应(ORR)电催化剂以替代基于Pt的催化剂仍然是一项重大挑战。因此,通过电纺丝技术结合“真空下快速煅烧”法合成了Fe,N共掺杂的Fe,N一维碳纳米纤维(Fe / N-CNFs)。受益于通过电纺技术获得的一维结构,具有介孔的合成Fe / N-CNFs电催化剂显示出较大的比表面积624.12 m(2)g(-1)。值得注意的是,与ORR的20 wt%Pt / C(0.86 V)相比,Fe4N物种的固有活性以及较大的比表面积可以使所得的Fe / N-CNF具有正的半波电势,为0.88V。 Fe / N-CNFs还表现出比20 wt%Pt / C更好的长期稳定性。此外,以Fe / N-CNFs为阴极构造的可再充电锌空气电池显示1.51 V的高开路电压,135 mW cm(-2)的峰值功率密度和55小时的出色循环寿命。合成后的电催化剂有望替代可充电锌空气电池的贵金属催化剂。

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