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Cumulative effect of transition metals on nitrogen and fluorine co-doped graphite nanofibers: an efficient and highly durable non-precious metal catalyst for the oxygen reduction reaction

机译:累积效应的过渡金属氮和氟co-doped石墨纳米纤维:一个高效和高耐用non-precious金属氧还原反应的催化剂

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摘要

Nitrogen and fluorine co-doped graphite nanofibers (N/F-GNF) and their cumulative effect with Fe and Co have been developed as an alternative non-precious metal catalyst for efficient oxygen reduction reaction (ORR) in acidic media. The synergistic effect between the doped hetero atoms and the co-ordinated Fe and Co towards ORR activity and durability of the catalyst is deeply investigated. A high ORR onset potential comparable with commercial Pt/C catalyst is observed with the Fe-Co/NF-GNF catalyst, which indicates that this catalyst is a potential alternative to Pt/C. A fivefold increase in mass activity is achieved by the Fe-Co/NF-GNF catalyst compared to the simple N/F-GNF catalyst, which endorses the significant role of transition metal atoms in enhancing ORR activity. The advanced Fe-Co/NF-GNF catalyst also exhibits complete tolerance to CH3OH and CO. The Fe-Co/NF-GNF catalyst also exhibits excellent durability towards the ORR with only a 10 mV negative shift in its half wave potential after a 10 000 repeated potential cycling test, whereas in the case of a commercial Pt/C catalyst there was an similar to 110 mV negative shift under similar environmental conditions. More stringent corrosive test cycles were also performed by maintaining the cell as high as 1.4 V with a later decrease to 0.6 V vs. RHE for 300 cycles, which showed the excellent durability of the Fe-Co/NF-GNF catalyst in comparison with the Pt/C catalyst. XPS analysis of the Fe-Co/NF-GNF catalyst presents the ORR active chemical states of N (pyridinic-N and graphitic-N) and F (semi-ionic-F) and the co-ordinated sites of Fe and Co species with the dopants. The excellent performance and durability of the Fe-Co/NF-GNF catalyst is due to the synergistic effect between the hetero atoms dopants (N and F) and strong co-ordinating bonds of M-N-C, which protect the graphene layers around the metallic species and greatly mitigates the leaching of Co and Fe during the long term cycling test. The high activity and long term durability of the Fe-Co/NF-GNF catalyst make it a promising ORR electrocatalyst for the fuel cell cathode reaction.
机译:氮、氟co-doped石墨纳米纤维(N / F-GNF)及其与铁和累积效应公司已经开发作为替代non-precious金属催化剂有效氧还原反应(ORR)在酸性介质。含杂原子掺杂之间的协同效应和协调Fe公司向奥尔活动和非常耐用性的催化剂调查。类似与商业Pt / C催化剂观察Fe-Co / NF-GNF催化剂,表明这是一个潜在的催化剂Pt / C的替代品。活动是通过Fe-Co / NF-GNF催化剂简单的N / F-GNF催化剂相比,哪个支持过渡金属的重要作用原子在提高或者活动。Fe-Co / NF-GNF催化剂也展示完成耐CH3OH Fe-Co / NF-GNF和有限公司催化剂也表现出良好的耐久性向奥尔只有10 mV -转变000后的半波电位重复潜在循环测试,而在的情况下有一个商业Pt / C催化剂类似于110 mV -下类似的转变环境条件。腐蚀性测试周期也由维持细胞高达1.4 V后来减少到0.6 V和流值300周期,显示的出色的耐用性Fe-Co / NF-GNF催化剂相比,Pt / C催化剂。催化剂提出了奥尔活性化学状态N (pyridinic-N和graphitic-N)和F(semi-ionic-F)和铁的协调网站与掺杂物和物种。Fe-Co / NF-GNF的性能和耐久性之间的协同效应是由于催化剂杂原子掺杂物(N和F)和强大协调的债券M-N-C,保护在金属种类和石墨烯层大大减轻了Co和铁的浸出在长期的循环试验。活动和长期的耐久性使它成为一个有前途的奥尔Fe-Co / NF-GNF催化剂electrocatalyst燃料电池阴极的反应。

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