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首页> 外文期刊>Nanoscale >From a ureidopyrimidinone containing organic precursor to excavated iron-nitrogen codoped hierarchical mesoporous carbon (Ex-FeN-MC) as an efficient bifunctional electrocatalyst
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From a ureidopyrimidinone containing organic precursor to excavated iron-nitrogen codoped hierarchical mesoporous carbon (Ex-FeN-MC) as an efficient bifunctional electrocatalyst

机译:从一个包含有机ureidopyrimidinone前兆挖掘iron-nitrogen codoped分级介孔碳(Ex-FeN-MC)作为高效双官能electrocatalyst

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摘要

A hierarchical excavated iron-nitrogen codoped mesoporous carbon (Ex-FeN-MC) electrocatalyst has been successfully synthesized by pyrolysis of the unique ureidopyrimidinone containing organic precursor MAMIS by using silica as the mesoporous template and iron nitrate as the source of iron. The selected organic precursor has multifunctionalities with diverse distribution of nitrogen and oxygen species which constitute interesting features to prepare the Ex-FeN-MC electrocatalyst. The as-prepared Ex-FeN-MC material shows unexpectedly higher catalytic activities towards ORR/OER performances with an over-potential of 250 mV for OER in alkaline solution at a current density of 10 mA cm(-2), while the ORR activity is almost similar to that of commercial Pt/C. It is believed that the excellent electrochemical performance results from the synergic contribution of the hierarchical uniform mesoporous structure, evenly distributed iron nanoparticles and high density of Ex-FeN-MC catalytically active sites. The presence of the hierarchical uniform mesoporous structure considerably accelerates the mass transfer and efficiently promotes the full utilization of active sites. Furthermore, it also possesses amorphous carbon in coexistence with lattice graphitic carbon which also enhanced the ORR/OER performances. Our research findings can surely provide a new insight to design highly active ORR/OER electrocatalysts by utilizing more novel organic precursors to provide interesting characteristics to electrocatalysts, as well as open up a route for constructing unique multifunctional materials with mesoporous architectures for electrocatalysis and supercapacitor applications.
机译:一个层次挖掘iron-nitrogen codoped介孔碳(Ex-FeN-MC) electrocatalyst被成功合成的热解独特的ureidopyrimidinone包含有机前体麻美利用介孔二氧化硅模板和硝酸铁为铁的来源。所选有机前体多功能性与多样化的分配氮和氧物种构成准备Ex-FeN-MC有趣的特性electrocatalyst。材料显示出出人意料的更高的催化对奥尔/ OER表演的活动潜在的250 mV OER的碱性解决方案的电流密度马10厘米(2)而奥尔活动几乎是类似的商业Pt / C。优秀的电化学性能结果的协同作用分层均匀的介孔结构,均匀分布式铁纳米颗粒和高密度网站的Ex-FeN-MC催化地活跃。分层均匀的介孔的存在结构质量大大加速转移和有效地促进活性中心的利用率。具有非晶碳共存晶格石墨碳也提高了奥尔/ OER表演。当然设计提供一个新的认识高度活跃的奥尔/ OER electrocatalysts利用更多提供有趣的小说有机前体特征electrocatalysts以及开放构造独特的路线多功能材料与介孔体系结构对电催化作用和超级电容器的应用程序。

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