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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >N-, O- and P-doped hollow carbons: Metal-free bifunctional electrocatalysts for hydrogen evolution and oxygen reduction reactions
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N-, O- and P-doped hollow carbons: Metal-free bifunctional electrocatalysts for hydrogen evolution and oxygen reduction reactions

机译:N-,O-和P掺杂的中空碳:用于氢气进化和氧还原反应的无金属双官能电催化剂

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摘要

To realize clean and renewable energy conversion systems, such as fuel cells and water splitting devices, cost-effective and energy-efficient bifunctional metal-free electrocatalysts are highly needed. Herein, N-, O- and P-doped hollow carbons (NOPHCs) are successfully synthesized via pyrolysis of Co2P-containing polypyrrole (Co2P@PPY) precursors and removal of Co2P templates. The materials are proven to serve as efficient and stable metal-free bifunctional electrocatalysts toward hydrogen evolution reaction (HER) and oxygen reduction reaction (ORR) in basic media. Notably, NOPHC10-900, which is obtained using 0.10 g of Co2P as template and pyrolyzed at 900 degrees C, exhibits high electrocatalytic performance for HER with a small overpotential of 290 mV at(-10) mA cm(-2), a low Tafel slope of 102 mV dec(-1), and a great long-term stability for 19 h. Moreover, it affords decent electrocatalytic performance for ORR, with positive onset potential, high electron-transfer number, good methanol crossover tolerance and outstanding durability. The excellent electrocatalytic performance is mainly due to the synergistic effect of the multi-heteroatoms dopants in it and the large density of active sites on the surface of the hollow carbons.
机译:为了实现清洁和可再生能源转换系统,例如燃料电池和水分裂装置,非常需要具有成本效益和节能的双官能金属电催化剂。在本文中,通过含CO 2P的聚吡咯(CO 2P @ PPY)前体的热解和除去CO 2P模板,成功地合成了N-,O-和P掺杂的中空碳(NOPHCS)。证明材料是用作氢气进化反应(其)和碱性介质中的氧还原反应(ORR)的高效稳定的无金属双官能电催化剂。值得注意的是,使用0.10g CO 2P作为模板获得的NOPHC10-900和在900℃下热解,在(-10)mA cm(-2)下的小型过电位为290 mV,对其表现出高的电催化性能。 Tafel斜率为102 mV DEC(-1),以及19小时的长期稳定性。此外,它为ORR提供了体面的电催化性能,具有阳性发作潜力,高电子转移数,良好的甲醇交叉耐受性和出色的耐用性。优异的电催化性能主要是由于多杂原子掺杂剂的协同作用以及中空碳表面上的活性位点的大密度。

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