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Hollow carbon nanoparticles derived from Co3O4/carbon black hybrid: solid-phase synthesis and applications in a Zn-air battery

机译:中空碳纳米粒子衍生自CO 3 O4 /炭黑杂种:固相合成和在Zn-air电池中的应用

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摘要

Metal-free carbon materials are regarded as a promising catalyst for the oxygen reduction reaction (ORR), owing to their high activity in an alkaline environment. In this paper, using industrial carbon black-supported Co3O4 hybrid as a raw material, typical hollow carbon nanoparticles were synthesized by solid-phase annealing the hybrid at an elevated temperature, followed by HCl etching to remove the cobalt oxide. The specific surface area of the hollow carbon is significantly increased and the total nitrogen content of the carbon is 4.13 at%, providing massive active sites for ORR. In alkaline solution, compared with the commercial Pt/C, the nitrogen-doped hollow carbon nanoparticles display a superior ORR electrocatalytic activity with a half-wave potential of 0.88 V versus the reversible hydrogen electrode. Furthermore, the catalyst exhibits an excellent stability and high discharge power density in the Zn-air battery. This study provides a simple and feasible strategy of solid-phase synthesis for the production of high performance metal-free hollow carbon materials.
机译:由于其碱性环境中的高活性,无金属碳材料被认为是氧还原反应(ORR)的有希望的催化剂。本文采用工业炭黑支撑的CO3O4杂交作为原料,通过固相退火在升高的温度下通过固相退火合成典型的中空碳纳米粒子,然后通过HCl蚀刻除去氧化钴。中空碳的比表面积显着增加,并且碳的总氮含量为4.13at%,为ORR提供巨大的活性位点。在碱性溶液中,与商业Pt / c相比,氮掺杂的中空碳纳米粒子显示出优异的Orr电催化活性,其半波电位为0.88V而可逆氢电极。此外,催化剂在Zn空气电池中表现出优异的稳定性和高放电功率密度。本研究提供了一种简单可行的固相合成策略,用于生产高性能无金属中空碳材料。

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