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首页> 外文期刊>Advanced Functional Materials >Nanostructured β-Bi_2O_3 Fractals on Carbon Fibers for Highly Selective CO_2 Electroreduction to Formate
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Nanostructured β-Bi_2O_3 Fractals on Carbon Fibers for Highly Selective CO_2 Electroreduction to Formate

机译:碳纤维上的纳米结构β-Bi_2O_3分形用于高选择性CO_2电还原形成甲酸酯

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摘要

3D Bi2O3 fractal nanostructures (f-Bi2O3) are directly self-assembled on carbon fiber papers (CFP) using a scalable hot-aerosol synthesis strategy. This approach provides high versatility in modulating the physiochemical properties of the Bi2O3 catalyst by a tailorable control of its crystalline size, loading, electron density as well as providing exposed stacking of the nanomaterials on the porous CFP substrate. As a result, when tested for electrochemical CO2 reduction reactions (CO2RR), these f-Bi2O3 electrodes demonstrate superior conversion of CO2 to formate (HCOO-) with low onset overpotential and a high mass-specific formate partial current density of -52.2 mA mg(-1), which is approximate to 3 times higher than that of the drop-casted control Bi2O3 catalyst (-15.5 mA mg(-1)), and a high Faradaic efficiency (FEHCOO-) of 87% at an applied potential of -1.2 V versus reversible hydrogen electrode. The findings reveal that the high exposure of roughened beta-phase Bi2O3/Bi edges and the improved electron density of these fractal structures are key contributors in attainment of high CO2RR activity.
机译:3D Bi2O3分形纳米结构(f-Bi2O3)使用可扩展的热气溶胶合成策略直接自组装在碳纤维纸(CFP)上。该方法通过对Bi2O3催化剂的晶体大小,负载,电子密度进行可调节的控制,以及在多孔CFP基材上提供纳米材料的裸露堆叠,从而在调节Bi2O3催化剂的物理化学性质方面提供了多功能性。结果,这些f-Bi2O3电极在进行电化学CO2还原反应(CO2RR)测试时,表现出出色的CO2转化为甲酸(HCOO-)的特性,且具有较低的起始过电位和高质量比的甲酸分电流密度-52.2 mA mg (-1),比滴铸的对照Bi2O3催化剂(-15.5 mA mg(-1))高约3倍,并且在施加的电位下的法拉第效率(FEHCOO-)为87% -1.2 V相对于可逆氢电极。这些发现表明,高暴露度的粗糙的β相Bi2O3 / Bi边缘和这些分形结构的改进的电子密度是获得高CO2RR活性的关键因素。

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