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Highly Selective Conversion of CO2 to CO Achieved by a Three-Dimensional Porous Silver Electrocatalyst

机译:三维多孔银电催化剂可将CO2高度选择性转化为CO

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摘要

A three-dimensional, porous silver foam catalyst was fabricated by a simple electrodeposition approach under high applied currents and vigorous hydrogen evolution conditions. The asprepared catalyst can be used directly as the working electrode for electrochemical reduction of CO2 without further treatments, which can reduce CO2 selectively to CO with a high Faradaic Efficiency of 94.7% and a large current density of 10.80 mA cm2 at an applied potential of 0.99 V. The performance tradeoff between CO Faradaic Efficiency (FECO) and current density is successfully circumvented with the novel foam structured catalyst, which is capable of delivering high value of FECO as well as large current densities (>10 mA cm2). The enhanced catalytic performances can be attributed to the unique configuration of the three dimensional, highly porous Ag foam electrode, which not only offers high electrode integrity, conductivity and stability, but also possess large surface area with active sites and easily accessible pores that allow facile transportation of reactants (CO2 and H2O) and products (CO and H2).
机译:在高施加电流和剧烈的氢进化条件下,通过简单的电沉积方法制造了三维多孔的多孔银泡沫催化剂。急性催化剂可直接用作无需进一步处理的二氧化碳电化学还原的工作电极,该电源可以选择性地降低CO2,而在0.99的施加电位上,高FARADAIC效率为94.7%,高电流密度为94.7%,高电流密度为10.80 mA CM2。 V. Co Faradaic效率(FECO)和电流密度之间的性能权衡通过新型的泡沫结构化催化剂成功避免,该催化剂能够提供高的FECO和大型电流密度(> 10 mA CM2)。增强的催化性能可以归因于三维高度多孔的Ag泡沫电极的独特构型,该配置不仅具有高电极的完整性,电导率和稳定性,而且还具有带有活跃位点的大型表面积,并且易于易于接近的毛孔反应物(CO2和H2O)和产品(CO和H2)的运输。

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