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Microwave-assisted polyol preparation of reduced graphene oxide nanoribbons supported platinum as a highly active electrocatalyst for oxygen reduction reaction

机译:微波辅助多元醇制备石墨烯氧化物纳米纤维支撑铂作为氧还原反应的高活性电催化剂

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摘要

Reduced graphene oxide nanoribbons (RGONRs) supported platinum catalysts were prepared by microwave-assisted polyol method, in which Pt nanoparticles were uniformly dispersed with a mean particle of 3.5 nm. During the synthesis, Pt ions were first attached to graphene oxide nanoribbons, then the encased metal ions and graphene oxide nanoribbons were simultaneously reduced by ethylene glycol. X-ray photoelectron spectra and X-ray diffraction indicate that the graphene oxide nanoribbons were partially reduced and the Pt nanoparticles were attached to the oxygen-containing groups on the surface of the support. Pt/RGONRs exhibits excellent activity for the oxygen reduction reaction, which is approximately 2 times better than commercial Pt/C with promising durability after 5000 cycles of accelerated durability tests. The enhancement of electrocatalytic activity and better durability may be explicated by the well dispersed Pt NPs on the RGONRs and the attachment of Pt ions with the oxygen-containing groups before the reduction.
机译:通过微波辅助多元醇方法制备了石墨烯氧化物纳米纤维(RGONR)负载的铂催化剂,其中Pt纳米粒子均匀地分散,平均颗粒为3.5nm。在合成期间,首先将Pt离子连接到石墨烯氧化物纳米中,然后通过乙二醇同时降低包封的金属离子和石墨烯纳米纤维植物。 X射线光电子体光谱和X射线衍射表明石墨烯氧化物纳米被部分地还原,并将Pt纳米颗粒连接到载体表面上的含氧基团上。 PT / RGONRS对氧还原反应表现出优异的活性,这比商业PT / C效果大约是2倍,其在加速耐久性试验的5000次循环后具有很大的耐久性。电催化活性和更好的耐久性的增强可以通过RGONR上的良好分散的Pt NP和Pt离子与含氧基团的附着在还原之前求解。

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