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Synergistic interaction and controllable active sites of nitrogen and sulfur co-doping into mesoporous carbon sphere for high performance oxygen reduction electrocatalysts

机译:氮和硫共掺杂到介孔碳球中的协同相互作用和可控制的活性位点,用于高性能的氧还原电催化剂

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Nitrogen and sulfur co-doped mesoporous carbon sphere (NSMCS) was prepared as a metal-free catalyst by an economical and facile pyrolysis process. The mesoporous carbon spheres were derived from sodium carboxymethyl cellulose as the carbon source and the nitrogen and sulfur dopants were derived from urea and p-benzenedithiol, respectively. The doping level and chemical states of nitrogen and sulfur in the prepared NSMCS can be easily adjusted by controlling the pyrolysis temperature. The NSMCS pyrolyzed at 900 degrees C ( NSMCS-900) exhibited higher oxygen reduction reaction activity than the mesoporous carbon sphere doped solely with nitrogen or sulfur, due to the synergistic effect of co-doping. Among all the NSMCS samples, NSMCS-900 exhibited excellent ORR catalytic activity owing to the presence of a highly active site, consisting of pyridinic N, graphitic N, and thiophene S. Remarkably, the NSMCS-900 catalyst was comparable with commercial Pt/C, in terms of the onset and the half-wave potentials and showed better durability than Pt/C for ORR in an alkaline electrolyte. The approach demonstrated in this work could be used to prepare promising metal-free electrocatalysts for application in energy conversion and storage. (C) 2018 Elsevier B.V. All rights reserved.
机译:氮和硫共掺杂的介孔碳球(NSMCS)是通过经济,简便的热解工艺制备的无金属催化剂。中孔碳球由羧甲基纤维素钠作为碳源,氮和硫掺杂剂分别由尿素和对苯二硫醇衍生。通过控制热解温度可以很容易地调节制得的NSMCS中氮和硫的掺杂水平和化学状态。由于共掺杂的协同作用,在900摄氏度下热解的NSMCS(NSMCS-900)的氧还原反应活性高于仅掺杂氮或硫的中孔碳球。在所有NSMCS样品中,由于存在由吡啶N,石墨N和噻吩S组成的高活性位,NSMCS-900表现出优异的ORR催化活性。值得注意的是,NSMCS-900催化剂可与市售Pt / C媲美就起始和半波电位而言,在碱性电解液中的ORR表现出比Pt / C更好的耐久性。这项工作中证明的方法可用于制备有前途的无金属电催化剂,用于能量转换和存储。 (C)2018 Elsevier B.V.保留所有权利。

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