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Reduced graphene oxide supported gold nanoparticles for electrocatalytic reduction of carbon dioxide

机译:还原石墨烯氧化物负载的金纳米颗粒,用于电催化还原二氧化碳

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Electrochemical reduction of carbon dioxide is one of the methods which have the capability to recycle CO2 into valuable products for energy and industrial applications. This research article describes about a new electrocatalyst "reduced graphene oxide supported gold nanoparticles" for selective electro-chemical conversion of carbon dioxide to carbon monoxide. The main aim for conversion of CO2 to CO lies in the fact that the latter is an important component of syn gas (a mixture of hydrogen and carbon monoxide), which is then converted into liquid fuel via well-known industrial process called Fischer-Tropsch process. In this work, we have synthesized different composites of the gold nanoparticles supported on defective reduced graphene oxide to evaluate the catalytic activity of reduced graphene oxide (RGO)-supported gold nanoparticles and the role of defective RGO support towards the electrochemical reduction of CO2. Electrochemical and impedance measurements demonstrate that higher concentration of gold nanoparticles on the graphene support led to remarkable decrease in the onset potential of 240 mV and increase in the current density for CO2 reduction. Lower impedance and Tafel slope values also clearly support our findings for the better performance of RGOAu than bare Au for CO2 reduction.
机译:二氧化碳的电化学还原是具有再循环二氧化碳的方法之一,用于能量和工业应用的有价值产品。本研究制品介绍了一种新的电催化剂“氧化石墨烯氧化物负载金纳米颗粒”,用于选择性电化学转化二氧化碳与一氧化碳。 CO2转化为CO的主要目的在于,后者是SIN气体(氢气和一氧化碳的混合物)的重要组成部分,然后通过称为费氏托的公知工业过程转化为液体燃料过程。在这项工作中,我们已经合成了支持缺陷的石墨烯氧化物的金纳米颗粒的不同复合材料,以评估石墨烯氧化物(RGO)的催化活性和缺陷的Rgo载体对二氧化碳的电化学减少的作用。电化学和阻抗测量表明,石墨烯载体上的较高浓度的金纳米颗粒LED在240mV的起始电位上显着降低,并且电流密度增加了CO 2还原。较低的阻抗和Tafel斜率值也明确支持我们的研究结果,以实现RGoAu的表现,而不是裸AU进行二氧化碳减少。

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