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Nitrogen-doped carbon-based electrocatalysts synthesised by ball-milling

机译:滚珠研磨合成的氮掺杂碳基电催化剂

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摘要

Herein, for the first time, ball-milling of carbon materials (e.g. graphite, graphene oxide or graphene) in the presence of dicyandiamide (DCDA) followed by heat treatment at 800?°C was employed to synthesise N-doped carbons for the oxygen reduction reaction (ORR) in alkaline medium. The obtained results highlight that: i) the N-doped nanocarbon catalysts synthesis process employed herein is easy and could be used without hazardous solvents; ii) X-ray photoelectron spectroscopy indicated successful N-doping, iii) N-doped graphite and graphene are Mn-free as confirmed by the ICP-MS analysis, iv) the ORR electrocatalytic activity depends on the carbon source used for the catalyst preparation and v) all the N-doped nanocarbons revealed better ORR performance than the undoped materials.
机译:在此,首次,使用在二天使(DCDA)存在下的碳材料(例如石墨,石墨烯氧化物或石墨烯)的球磨,然后在800℃下进行热处理以合成用于氧气的N-掺杂的碳 碱性介质中还原反应(ORR)。 所得的结果突出显示:i)本文所用的N掺杂纳米碳催化剂合成方法容易,可以在没有危险溶剂的情况下使用; II)表明X射线光电子能谱表明成功的N-掺杂,III)N掺杂的石墨和石墨烯是通过ICP-MS分析的确认,IV)逆电催化活性取决于用于催化剂制剂的碳源 v)所有N掺杂的纳米烃都显示出比未掺杂的材料更好的性能。

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