Electrocatalysis of Ethanol and Methanol Electrooxidation by Composite Electrodes with NiOOH/FeOOH Supported on Reduced Graphene Oxide onto Composite Electrodes

J. Oliveira, A. C. Sá, L. Paim
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Abstract

: This paper presents graphite/paraffin composite electrodes modified with microparticles of nickel (Ni) and Ni-Fe alloy anchored in reduced graphene oxide (rGO); these electrodes were made by electrosynthesis. Firstly, the electrodeposition of reduced graphene oxide was made by cyclic voltammetry (CV) onto the graphite/paraffin electrodes’ surface. After electrodeposition of the rGO, iron and nickel were electrodeposited by CV with successive scans. Finally, the formation of iron-nickel oxyhydroxide on the electrode surface was performed by cyclic voltammetry in alkaline medium. The composites were investigated by field emission gun scanning electron microscopy (FEG-SEM); it was observed that the Ni microparticles had spherical shapes, while the Ni-Fe alloy did not present a defined shape. The composite electrodes were used to analysis ethanol and methanol electrooxidation in an alkaline medium of 0.10 mol L − 1 of NaOH in a potential range of from − 0.20 to 1.0 V (vs. Ag/AgCl) at 50 mV s − 1 by CV. The electrodes were able to make the electrooxidation of ethanol at a potential of around 0.57 V for the electrode constituted by the Ni-Fe alloy and around 0.61 V for the electrode modified with Ni, and for methanol in a potential around 0.57 V for the Ni-Fe alloy and around 0.66 V for the Ni electrode. The Ni-Fe alloy electrodes showed the electrocatalysis of the alcohols in relation to Ni electrodes.
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还原氧化石墨烯负载NiOOH/FeOOH复合电极对乙醇和甲醇电氧化的电催化
在还原氧化石墨烯(rGO)中锚定镍(Ni)和镍铁合金微粒修饰的石墨/石蜡复合电极;这些电极是电合成的。首先,利用循环伏安法(CV)在石墨/石蜡电极表面电沉积还原氧化石墨烯。电沉积rGO后,用连续扫描的CV电沉积铁和镍。最后,用循环伏安法在碱性介质中测定了铁镍氢氧化物在电极表面的形成。采用场发射枪扫描电镜(FEG-SEM)对复合材料进行了表征;观察到Ni微粒子呈球形,而Ni- fe合金不呈现明确的形状。采用复合电极在碱性NaOH浓度为0.10 mol L−1,电位为- 0.20 ~ 1.0 V (vs. Ag/AgCl),电压为50 mV s−1的条件下对乙醇和甲醇进行电氧化分析。该电极能够使乙醇在约0.57 V的电势下进行电氧化,由Ni- fe合金构成的电极约为0.61 V,用Ni修饰的电极约为0.61 V,而Ni- fe合金的电极约为0.57 V, Ni电极约为0.66 V。Ni- fe合金电极与Ni电极相比表现出醇的电催化作用。
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