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Intentional construction of high-performance SnO2 catalysts with a 3D porous structure for electrochemical reduction of CO2

机译:有意的高性能SnO2的建设三维多孔结构的催化剂电化学还原二氧化碳的

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摘要

Herein, SnO2-NC (SnO2-nanocube) and SnO2-NF (SnO2-nanoflake) electro-catalysts featuring a large specific surface area and 3D porous structure were successfully constructed via acid etching and sulfurization-desulphurization methods, respectively. As catalysts for the electrochemical reduction of CO2, the faradaic efficiency (FHCOO-+CO = 82.4%, 91.5%, respectively) and partial current density (j(HCOO-+CO) = 10.7 and 11.5 mA cm(-2), respectively) of SnO2-NCs and SnO2-NFs were enhanced in comparison with SnO2-NPs (SnO2-nanoparticles, FHCOO-+CO = 63.4%, j(HCOO-+CO) = 5.7 mA cm(-2)) at -1.0 V vs. RHE. The enhanced catalytic activity is attributed to their uniform 3D porous structure, high specific surface area and excellent wettability. Additionally, the morphology of SnO2-NCs and SnO2-NFs was largely preserved after electrolyzing for 12 h (after 12 h of electrolysis), indicating the effective buffering effect of the 3D structure in electrolysis. Naturally, the current density and faradaic efficiency of the SnO2-NC and SnO2-NF catalysts remained nearly unchanged after long-term stability measurements, revealing great stability.
机译:在此,SnO2-NC (SnO2-nanocube)和SnO2-NF(SnO2-nanoflake) electro-catalysts特色大比表面积和三维多孔通过酸结构被成功构建蚀刻和sulfurization-desulphurization方法,分别。感应电流的电化学还原的二氧化碳效率(FHCOO - + = 82.4%, 91.5%,分别)和局部电流密度(j (HCOO - + CO) = 10.7和11.5厘米(2),SnO2-NCs和SnO2-NFs分别)增强与SnO2-NPs相比(SnO2-nanoparticles FHCOO - + = 63.4%,马j (HCOO - + CO) = 5.7厘米(2))-1.0 V和流值。增强的催化活性是由于统一的三维多孔结构,特定的高表面积和良好的润湿性。此外,SnO2-NCs的形态学和SnO2-NFs主要是保存后电解后12 h (12 h电解),表明有效的缓冲在电解效果的3 d结构。自然,电流密度和感应电流的SnO2-NC和SnO2-NF催化剂的效率长期之后几乎保持不变稳定的测量,揭示很棒稳定。

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