首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Ultrafast Microwave-Assisted Route to Surfactant-Free Ultrafine Pt Nanoparticles on Graphene: Synergistic Co-reduction Mechanism and High Catalytic Activity
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Ultrafast Microwave-Assisted Route to Surfactant-Free Ultrafine Pt Nanoparticles on Graphene: Synergistic Co-reduction Mechanism and High Catalytic Activity

机译:石墨烯上无表面活性剂的超细Pt纳米粒子的超快微波辅助途径:协同共还原机理和高催化活性

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摘要

We demonstrate an ultrafast method for the formation of graphene supported Pt catalysts by the co-reduction of graphene oxide and Pt salt using ethylene glycol under microwave irradiation conditions. Detailed analysis of the mechanism of formation of the hybrids indicates a synergistic co-reduction mechanism whereby the presence of the Pt ions leads to a faster reduction of GO and the presence of the defect sites on the reduced GO serves as anchor points for the heterogeneous nucleation of Pt. The resulting hybrid consists of ultrafine nanoparticles of Pt uniformly distributed on the reduced GO susbtrate. We have shown that the hybrid exhibits good catalytic activity for methanol oxidation and hydrogen conversion reactions. The mechanism is general and applicable for the synthesis of other multifunctional hybrids based on graphene.
机译:我们展示了一种超快方法,该方法通过使用乙二醇在微波辐射条件下将氧化石墨烯和Pt盐共还原来形成石墨烯负载的Pt催化剂。对杂化物形成机理的详细分析表明存在协同共还原机理,其中Pt离子的存在导致GO的更快还原,而还原的GO上的缺陷位点充当异质成核的锚点的所得的杂化物由均匀分布在降低的GO悬浮液上的Pt超细纳米颗粒组成。我们已经表明,该杂化物对甲醇氧化和氢转化反应表现出良好的催化活性。该机制是通用的,可用于合成其他基于石墨烯的多功能杂化物。

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