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One-pot facile decoration of graphene nanosheets with Ag nanoparticles for electrochemical oxidation of methanol in alkaline solution

机译:用Ag纳米粒子一锅法装饰石墨烯纳米片用于碱性溶液中甲醇的电化学氧化

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Hybrid nanomaterials (GAg) of graphene nanosheets and Ag nanoparticles (Ag NPs) were prepared by a one-pot reduction of both Ag ~+ and graphene oxide (GO), and studied for electrochemical oxidation of methanol in alkaline solution. From TEM, XRD and other measurements, the crystalline Ag NPs with a typical diameter of 5-15 nm were homogeneously decorated on graphene nanosheets without aggregation, while their densities (25.6%-61.0%) could be easily controlled by changing the synthesis ratio of graphene oxide nanosheets to Ag ~+. Cyclic voltammograms results reveal that the GAg materials had the increased electrocatalytic activity (reversed catalytic peak current: 0.22 × 10 ~(- 5) A-1.01 × 10 ~(- 5) A) with the increase of Ag NPs loading for methanol oxidation in alkaline solution, and the catalytic current was linear to the concentration of CH _3OH. At last, the stability of GAg catalysts-modified electrodes and the influence of catalytic reaction temperature towards methanol oxidation were also investigated. The facile synthesis, low cost and high activity of the GAg materials make them have great potential applications in the direct methanol alkaline fuel cells (DMAFCs).
机译:通过一锅还原Ag〜+和氧化石墨烯(GO)制备石墨烯纳米片和银纳米颗粒(Ag NPs)的杂化纳米材料,并研究了甲醇在碱性溶液中的电化学氧化。从TEM,XRD和其他测量结果来看,典型直径为5-15 nm的晶体Ag NPs在石墨烯纳米片上均匀地装饰而没有聚集,而其密度(25.6%-61.0%)可以通过改变Pb的合成比例来容易地控制。氧化石墨烯纳米片制备成Ag〜+。循环伏安图结果表明,GAg材料具有较高的电催化活性(逆催化峰电流:0.22×10〜(-5)A-1.01×10〜(-5)A),且甲醇中Ag NPs负载量增加。碱性溶液,催化电流与CH _3OH的浓度成线性关系。最后,研究了GAg催化剂修饰电极的稳定性以及催化反应温度对甲醇氧化的影响。 GAg材料的简便合成,低成本和高活性使其在直接甲醇碱性燃料电池(DMAFC)中具有巨大的潜在应用。

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