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Tailoring carbon nanotubes surface with maleic anhydride for highly dispersed PtRu nanoparticles and their electrocatalytic oxidation of methanol

机译:用马来酸酐修饰碳纳米管表面制备高分散的PtRu纳米粒子及其对甲醇的电催化氧化。

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Taking the direct Friedel-Crafts reaction between pristine carbon nanotubes (CNT) and maleic anhydride, we have developed a facile strategy for the synthesis of carboxylated-carbon nanotubes (CNT-C). The covalently grafted carboxyl groups on the CNT-C surface not only significantly improves its hydrophilicity, but also effectively anchors and stabilizes the PtRu nanoparticles. Transmission electron microscopy images reveal that PtRu nanoparticles with an average size of 3.3 nm are uniformly dispersed on the CNT-C surface. Electrochemical results demonstrate the PtRu/CNT-C nanohybrids obtained have a higher electrochemical surface area, electrocatalytic activity and better stability towards methanol oxidation when compared to PtRu nanoparticles supported on acid oxidized-CNT. This provides a facile approach to synthesize noble metal nanoparticles/CNT electrocatalysts for high performance energy conversion devices in the future.
机译:采取原始碳纳米管(CNT)和顺丁烯二酸酐之间的直接Friedel-Crafts反应,我们已经开发了一种简便的合成羧化碳纳米管(CNT-C)的策略。 CNT-C表面上的共价接枝羧基不仅可以显着提高其亲水性,而且可以有效地锚定并稳定PtRu纳米颗粒。透射电子显微镜图像显示平均粒径为3.3 nm的PtRu纳米颗粒均匀地分散在CNT-C表面上。电化学结果表明,与负载在酸氧化CNT上的PtRu纳米颗粒相比,所获得的PtRu / CNT-C纳米杂化物具有更高的电化学表面积,电催化活性和对甲醇氧化的更好稳定性。这为将来用于高性能能量转换装置的贵金属纳米颗粒/ CNT电催化剂的合成提供了一种简便的方法。

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