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Covalent organic polymers derived carbon incorporated with cobalt oxides as a robust oxygen reduction reaction catalyst for fuel cells

机译:共价有机聚合物衍生与氧化钴的碳,作为燃料电池的稳健氧还原反应催化剂

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摘要

Synthesizing high efficient oxygen reduction reaction catalyst is crucial for electrochemical technologies such as fuel cells. Herein, we proposed a covalent organic polymers derived carbon with cobalt oxides incorporation (Co/N-C-COPs) as ORR electrocatalysts for fuel cells. The Co/N-C-COPs was demonstrated to possess sufficient active sites and uniformly dispersed cobalt and nitrogen elements. The as-prepared Co/N-C-COPs at 800 degrees C showed the best ORR catalytic activity with a half-wave potential (-0.16 V vs. Ag/AgCl) and limiting current density (3.99 mA cm(-2)) similar to that of Pt/C (-0.15 V vs. Ag/AgCl and 4.05 mA cm(-2)) in alkaline media. When using the Co/N-C-COPs as cathode electrocatalyst, two types of home-made fuel cells (microbial fuel cell and direct formate fuel cell) delivered a comparable or even higher power output than that using Pt/C, due to its intriguing features including high catalytic activity, high poison tolerance and good durability. These results suggested that the as-proposed Co/N-C-COPs catalyst probably provide an alternative avenue for developing the cathode electrocatalysts for fuel cell applications.
机译:合成高效氧还原反应催化剂对于诸如燃料电池之类的电化学技术至关重要。在此,我们提出了一种与钴氧化物掺入(CO / N-C-COPS)的碳的共价有机聚合物作为燃料电池的ORR电催化剂。证明CO / N-C-COPS具有足够的活性位点并均匀分散的钴和氮素元件。 800℃的制备的CO / NC-COPS显示出具有半波电位(-0.16V与Ag / AgCl)的最佳ORR催化活性,并限制电流密度(3.99 mA cm(-2))类似于碱性介质中Pt / C(-0.15V与Ag / AgCl和4.05 mA(-2))的pt / c(-0.15V Vs.Ag / AgCl和4.05 mA(-2))。当使用CO / NC-COPS作为阴极电催化剂时,由于其有趣功能包括高催化活性,高毒耐受性和良好的耐用性。这些结果表明,AS提出的CO / N-C-COPS催化剂可能提供用于开发用于燃料电池应用的阴极电催化剂的替代途径。

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