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Preparation of Nitrogen-Doped Carbon Nanotubes with Different Morphologies from Melamine-Formaldehyde Resin

机译:用三聚氰胺-甲醛树脂制备不同形态的掺氮碳纳米管

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摘要

We report a facile method for the synthesis of nitrogen-doped carbon nanotubes (NCNTs) from melamine-formaldehyde (MR) resin using FeCl3 or supported FeCl3 as catalysts. The growth of NCNTs: follows a decomposition reconstruction mechanism, in which the polymer precursor would totally gasify during pyrolysis process and then transformed into carbon nanotubes. The morphology of he NCNTs could be adjusted via applying different catalyst supports and three kinds of carbon nanotubes with outer-diameter of 20-200 nm and morphologies of either bamboo-like or hollow interiors were obtained. Nitrogen atoms in the materials were mainly in the form of pyridinic and quaternary form while the formation of iron species sttongly depended on the interaction between iniri precursor and organic carbonitrogen sources. All MR resin,derived NCNTs are efficient toward oxygen reduction reaction (ORR). NCNTs prepared using FeCl3 as catalyst showed the highest ORR activity with half-wave potentials of -0.17 V, which is comparable with commercial Pt/C. This is probably because of a close contact between MR. resin and iron precursor could enhance the iron-ligand coordination strength and thus steadily improve the performance of the catalyst.
机译:我们报告了一种简便的方法,可使用FeCl3或负载型FeCl3作为催化剂,从三聚氰胺-甲醛(MR)树脂合成氮掺杂碳纳米管(NCNT)。 NCNT的生长:遵循分解重建机制,其中聚合物前体在热解过程中将完全气化,然后转化为碳纳米管。可以通过使用不同的催化剂载体来调节He NCNT的形貌,并获得三种外径为20-200 nm的碳纳米管,并获得竹状或中空内部形态。材料中的氮原子主要以吡啶和季铵盐形式存在,而铁的形成则主要取决于iniri前驱物与有机碳/氮源之间的相互作用。所有源自MR树脂的NCNT均可有效地进行氧还原反应(ORR)。以FeCl3为催化剂制备的NCNT的ORR活性最高,半波电位为-0.17 V,与市售Pt / C相当。这可能是由于MR之间的紧密接触。树脂和铁前体可以增强铁-配体的配位强度,从而稳定地提高催化剂的性能。

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