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A metal-free bifunctional electrocatalyst for oxygen reduction and oxygen evolution reactions

机译:用于氧还原和氧释放反应的无金属双功能电催化剂

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The oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are traditionally carried out with noble metals (such as Pt) and metal oxides (such as RuO2 and MnO2) as catalysts, respectively. However, these metal-based catalysts often suffer from multiple disadvantages, including high cost, low selectivity, poor stability and detrimental environmental effects. Here, we describe a mesoporous carbon foam co-doped with nitrogen and phosphorus that has a large surface area of similar to 1,663 m(2) g(-1) and good electrocatalytic properties for both ORR and OER. This material was fabricated using a scalable, one-step process involving the pyrolysis of a polyaniline aerogel synthesized in the presence of phytic acid. We then tested the suitability of this N,P-doped carbon foam as an air electrode for primary and rechargeable Zn-air batteries. Primary batteries demonstrated an open-circuit potential of 1.48 V, a specific capacity of 735 mAh g(Zn)(-1) (corresponding to an energy density of 835 Wh kg(Zn)(-1)), a peak power density of 55 mW cm(-2), and stable operation for 240 h after mechanical recharging. Two-electrode rechargeable batteries could be cycled stably for 180 cycles at 2 mA cm(-2). We also examine the activity of our carbon foam for both OER and ORR independently, in a three-electrode configuration, and discuss ways in which the Zn-air battery can be further improved. Finally, our density functional theory calculations reveal that the N,P co-doping and graphene edge effects are essential for the bifunctional electrocatalytic activity of our material.
机译:传统上,氧还原反应(ORR)和氧释放反应(OER)分别以贵金属(例如Pt)和金属氧化物(例如RuO2和MnO2)作为催化剂进行。然而,这些基于金属的催化剂通常具有多个缺点,包括高成本,低选择性,差的稳定性和不利的环境影响。在这里,我们描述了一种氮和磷共掺杂的介孔碳泡沫,它的大表面积类似于1,663 m(2)g(-1),并且对ORR和OER都具有良好的电催化性能。该材料是使用可缩放的一步法制造的,该过程涉及在植酸存在下热解合成的聚苯胺气凝胶。然后,我们测试了这种N,P掺杂的碳泡沫作为一次和可充电Zn-空气电池的空气电极的适用性。一次电池的开路电势为1.48 V,比容量为735 mAh g(Zn)(-1)(对应于835 Wh kg(Zn)(-1)的能量密度),峰值功率密度为55 mW cm(-2),机械充电后稳定运行240 h。两电极可充电电池可以在2 mA cm(-2)下稳定循环180次。我们还以三电极配置独立地检查了碳泡沫对于OER和ORR的活性,并讨论了进一步改善Zn-空气电池的方法。最后,我们的密度泛函理论计算表明,N,P共掺杂和石墨烯边缘效应对于我们材料的双功能电催化活性至关重要。

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