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Controllable synthesis of nitrogen-doped carbon nanotubes derived from halloysite-templated polyaniline towards nonprecious ORR catalysts

机译:由埃洛石为模板的聚苯胺向非贵金属ORR催化剂可控合成氮掺杂碳纳米管

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Halloysites were applied as the template to form halloysite/polyaniline core/shell hybrids through an oxidative polymerization route, where the amount of aniline monomer could be adjusted to precisely control the shell thickness of polyaniline. The pyrolysis process was then applied to ensure the carbonization of the polyaniline to form halloysiteitrogen-doped carbon core/shell hybrids. Finally, halloysites were removed, resulting in the formation of nitrogen-doped carbon nanotube with a uniform morphology and a controlled shell thickness. The shell thickness and pyrolysis temperature of nitrogen-doped carbon nanotubes were optimized to improve the electrocatalytic performance involved in oxygen reduction reaction. The nitrogen-doped carbon nanotubes showed good electrocatalytic activities toward oxygen reduction reaction in 0.1 mol L-1 KOH aqueous solution, making them a promising cathode catalyst for alkaline fuel cell applications.
机译:采用埃洛石作为模板,通过氧化聚合途径形成埃洛石/聚苯胺核/壳杂化体,其中苯胺单体的量可以调节以精确控制聚苯胺的壳厚度。然后应用热解过程以确保聚苯胺的碳化以形成埃洛石/氮掺杂的碳核/壳杂化物。最终,去除了埃洛石,从而形成了具有均匀形态和可控壳厚度的氮掺杂碳纳米管。优化了氮掺杂碳纳米管的壳厚度和热解温度,以提高参与氧还原反应的电催化性能。氮掺杂的碳纳米管在0.1 mol L-1 KOH水溶液中对氧还原反应表现出良好的电催化活性,使其成为碱性燃料电池应用的有希望的阴极催化剂。

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