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首页> 外文期刊>ChemElectroChem >Porous Carbon Networks Decorated with Cobalt on CoFe(2)O(4)as an Air-Breathing Electrode for High-Capacity Rechargeable Lithium-Air Batteries: Role of Metallic Cobalt Nanoparticles
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Porous Carbon Networks Decorated with Cobalt on CoFe(2)O(4)as an Air-Breathing Electrode for High-Capacity Rechargeable Lithium-Air Batteries: Role of Metallic Cobalt Nanoparticles

机译:多孔碳网络在CoFe(2)O(4)上装饰为高容量可充电锂气电池的空气呼吸电极:金属钴纳米粒子的作用

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摘要

The development of cost-effective efficient bifunctional electrocatalysts for metal-air batteries is an important aspect for its commercialization. We demonstrate the effect of Co nanoparticles and/or the porous carbon matrix in pristine CoFe2O4(CFO) electrocatalysts towards the oxygen reduction reaction (ORR) and the oxygen evolution reaction (OER). The Co/CoFe2O4-carbon network (CCFOC) with a high surface area and good conductivity offered more active sites for oxygen adsorption as well as accelerated electron transfer kinetics, leading to superior ORR and OER activities. A Li-air battery split cell was fabricated using the CCFOC as an air-breathing electrode, which exhibited a high discharge capacity of 4320 mAh g(-1)at a high current density of 100 mA g(-1)with an acceptable cycling stability and columbic efficiency. The fabricated coin cell or the split cell Li-air battery could power a commercial 2.8 V green LED bulb continuously for more than 6 h.
机译:用于金属 - 空气电池的经济高效的双功能电池的开发是其商业化的重要方面。 我们证明了CO纳米颗粒和/或多孔碳基质在原始COFE2O4(CFO)电催化剂朝向氧还原反应(ORR)和氧气进化反应(OER)中的影响。 具有高表面积和良好电导率的CO / COFE2O4-CANCS网络(CCFOC)为氧气吸附以及加速电子转移动力学提供了更多的活性部位,导致卓越的ORR和OER活动。 使用CCFOC作为空气呼吸电极制造Li-Abile电池分割电池,其在高电流密度为100 mA g(-1)的高放电容量,具有可接受的循环 稳定性和牙牙效率。 制造的硬币电池或分裂电池Li-Air电池可以连续地为商业2.8V绿色LED灯泡供电超过6小时。

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