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Facet Sensitivity of Capping Ligand-Free Ag Crystals in CO2 Electrochemical Reduction to CO

机译:将Co2电化学减少的CO2电化学晶体中的覆盖配体Ag晶体的平面敏感性

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摘要

Silver-based electrocatalysts are active in catalyzing electrochemical reduction of CO2 to CO. We herein report synthesis of capping ligand-free Ag cubes and octahedra by morphology-preserved CO reduction from corresponding Ag2O counterparts and their performance in electrochemical reduction of CO2. Ag cubes are much more active than Ag octahedra and exhibit a stable CO formation rate as high as 142.4 mmol(CO) g(cat)(-1) h(-1) at -0.95 V (vs. RHE). Ag films transiently formed on Ag2O crystals during CO2 electroreduction were observed more active than Ag crystals, revealing a promoting effect of Ag2O substrate on electrocatalytic activity of Ag film. These results clearly identify a facet sensitivity of silver electrocatalysts and highlight the importance of surface cleanness of Ag colloids as efficient electrocatalysts.
机译:基于银基的电催化剂在催化CO 2至CO的电化学还原方面是活性的。我们在此报告通过相应的AG2O对应物的形态保存的CO降低以及它们在CO 2的电化学减少中的性能中通过形态保存的CO降低的合成。 AG立方体比Ag OctaHEDRA更活跃,并且在-0.95V(Vs.She)上表现出高达142.4mmol(CO)(CAT)( - 1)H(-1)的稳定CO形成率。 在二氧化碳电荷电荷中瞬时形成的Ag膜比Ag晶体更活跃,揭示了Ag2O底物对Ag膜的电催化活性的促进作用。 这些结果清楚地识别了银电催化剂的平面敏感性,并突出了Ag胶体作为高效电催化剂的表面清洁度的重要性。

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