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首页> 外文期刊>Electrochimica Acta >Effect of template size on the synthesis of mesoporous carbon spheres and their supported Fe-based ORR electrocatalysts
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Effect of template size on the synthesis of mesoporous carbon spheres and their supported Fe-based ORR electrocatalysts

机译:模板尺寸对介孔碳球及其负载型铁基ORR电催化剂合成的影响

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摘要

Three mesoporous carbon spheres (MPCs) are synthesized using three different templates with sizes of 22, 35 and 50 nm, respectively. These three MPC materials are then used as catalyst supports to form three catalysts (Fe-N_X/MPC22, Fe-N_X/MPC35, and Fe-N_X/MPC50) for oxygen reduction reaction (ORR). SEM images show that after catalyst deposition on the synthesized mesoporous carbon, the spherical morphology of mesoporous carbon is well maintained. EDX measurements show that the average Fe content in the formed mesoporous carbon supported catalysts is very close to the initial synthesis value of 5 wt%. BET and linear scanning voltammetry are used for characterizing the surface area and electrochemical properties of the synthesized MPC support materials to study the effect of template size (or pore size). The results show that mesoporous carbon with template size of 50 nm has the largest BET surface area (2125 m~2/g). The measurement results show that all ORR activities of these three MPC supported catalysts are higher than that of commercially available carbon supported one, demonstrating the advantage of MPC support. Among these three catalysts, the performance order is Fe-N_X/MPC50 > Fe-N_X/MPC35 > Fe-N_X/MPC22, showing the effect of template size on the ORR activity of the catalyst, i.e., the ORR activity increases when the template size (or MPC pore size) is increased. The results also clearly indicate that the mesopores in the range of 22-50 nm can still affect the ORR activity, suggesting that mesopores are also important in the formation of ORR active sites besides micropores.
机译:使用尺寸分别为22、35和50 nm的三个不同模板合成了三个中孔碳球(MPC)。然后,将这三种MPC材料用作催化剂载体,以形成用于氧还原反应(ORR)的三种催化剂(Fe-N_X / MPC22,Fe-N_X / MPC35和Fe-N_X / MPC50)。 SEM图像表明,催化剂沉积在合成的介孔碳上后,介孔碳的球形形态得到很好的维持。 EDX测量表明形成的中孔碳负载的催化剂中的平均Fe含量非常接近5wt%的初始合成值。 BET和线性扫描伏安法用于表征合成的MPC载体材料的表面积和电化学性质,以研究模板尺寸(或孔径)的影响。结果表明,模板尺寸为50 nm的中孔碳具有最大的BET表面积(2125 m〜2 / g)。测量结果表明,这三种MPC负载催化剂的所有ORR活性均高于市售碳负载的催化剂,这证明了MPC负载的优势。在这三种催化剂中,性能顺序为Fe-N_X / MPC50> Fe-N_X / MPC35> Fe-N_X / MPC22,显示模板大小对催化剂ORR活性的影响,即当模板时ORR活性增加尺寸(或MPC孔径)增加。该结果还清楚地表明,在22-50nm范围内的中孔仍然可以影响ORR活性,这表明除了微孔以外,中孔在ORR活性位点的形成中也很重要。

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