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首页> 外文期刊>Nanoscale >FeCo/N-co-doped 3D carbon nanofibers as efficient bifunctional oxygen electrocatalyst for Zn–air batteries
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FeCo/N-co-doped 3D carbon nanofibers as efficient bifunctional oxygen electrocatalyst for Zn–air batteries

机译:FeCo/N-co掺杂3D碳纳米纤维作为Zn-air电池的高效双功能氧电催化剂

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摘要

Flexible zinc–air batteries (ZABs) are expected to become a promising candidate in energy storage equipment for wearable electronic devices. However, the sluggish kinetics of the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) have impeded the development of ZABs. Herein, an FeCo- and N-codoped bifunctional electrocatalyst (FeCoNCF) is fabricated by simple one-pot and pyrolysis strategies. Concretely, the bacterial cellulose (BC) and Prussian blue analogue (PBA) derived transition metal and nitrogen doped carbon (M–N–C) composites provide ORR and OER active sites. FeCoNCF exhibits outstanding ORR and OER activities. It displays a favorable high half-wave potential (0.81 V) and a low overpotential at 10 mA cm−2 (341 mV), which are on a par with commercial Pt/C and RuO2, and shows outstanding stability. The sandwich-type flexible zinc–air battery containing FeCoNCF shows a favorable power density (49.29 mW cm−2) and superior cycling stability.
机译:灵活的锌空气电池(ZABs)预计在能量储存成为一种很有前途的候选人可穿戴设备电子设备。然而,低迷的动力学的氧气还原反应(ORR)和氧进化反应(OER)阻碍了发展ZABs。electrocatalyst (FeCoNCF)是通过简单制作的锅和热解策略。细菌纤维素(BC)和普鲁士蓝模拟(PBA)派生的过渡金属氮掺杂碳(M-N-C)复合材料提供奥尔和OER活跃的网站。杰出的奥尔和OER的活动。良好的半波高(0.81 V)和潜力马过电压低10厘米−2 (341 mV)与商业Pt / C和RuO2,然后呢显示了出色的稳定性。包含FeCoNCF灵活的锌空气电池显示了良好的功率密度(49.29 mW厘米−2)和优越的循环稳定性。

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