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Size-controlled large-diameter and few-walled carbon nanotube catalysts for oxygen reduction

机译:Size-controlled大口径和few-walled碳纳米管的催化剂氧还原

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We demonstrate a new strategy for tuning the size of large-diameter and few-walled nitrogen-doped carbon nanotubes (N-CNTs) from 50 to 150 nm by varying the transition metal (TM = Fe, Co, Ni or Mn) used to catalyze graphitization of dicyandiamide. Fe yielded the largest tubes, followed by Co and Ni, while Mn produced a clot-like carbon morphology. We show that morphology is correlated with electrocatalytic activity for the oxygen reduction reaction (ORR). A clear trend of Fe > Co > Ni > Mn for the ORR catalytic activity was observed, in both alkaline media and more demanding acidic media. The Fe-derived N-CNTs exhibited the highest BET (similar to 870 m(2) g(-1)) and electrochemically accessible (similar to 450 m(2) g(-1)) surface areas and, more importantly, the highest concentration of nitrogen incorporated into the carbon planes. Thus, in addition to the intrinsic high activity of Fe-derived catalysts, the high surface area and nitrogen doping contribute to high ORR activity. This work, for the first time, demonstrates size-controlled synthesis of large-diameter N-doped carbon tube electrocatalysts by varying the metal used in N-CNT generation. Electrocatalytic activity of the Fe-derived catalyst is already the best among studied metals, due to the high intrinsic activity of possible Fe-N coordination. This work further provides a promising route to advanced Fe-N-C nonprecious metal catalysts by generating favorable morphology with more active sites and improved mass transfer.
机译:我们展示一个新的战略调整大小大口径和few-walled nitrogen-doped碳纳米管(N-CNTs)从50到150海里不同过渡金属(TM =铁、Co、Ni或Mn)用于催化石墨化双氰胺。其次是公司和倪,Mn产生了clot-like碳形态。形态与electrocatalytic相关活动的氧还原反应(ORR)。一个明确的趋势的铁>有限公司>镍>锰奥尔催化活性被观察到,在碱性的媒体和酸性介质的更高要求。Fe-derived N-CNTs表现出最高的选择(类似于870米(2)g(1))和电化学原理访问(类似于450 g(1)(2))的表面领域,更重要的是,最高的吸收的氮浓度碳的飞机。Fe-derived催化剂活性高,高表面积和氮掺杂导致高或者活动。演示了size-controlled合成大口径管n型碳electrocatalysts通过改变金属中使用N-CNT一代。Fe-derived催化剂已经最好的之一研究了金属,由于较高的内在可能的Fe-N协调活动。进一步提供了一种有前途的先进著Fe-N-C通过生成良好的形态和更积极的网站改善传质。

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