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Fast and Selective Photoreduction of CO2 to CO Catalyzed by a Complex of Carbon Monoxide Dehydrogenase TiO2 and Ag Nanoclusters

机译:一氧化碳脱氢酶TiO2和Ag纳米团簇的复合物催化将CO2快速选择性光还原为CO

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摘要

Selective, visible-light-driven conversion of CO2 to CO with a turnover frequency of 20 s−1 under visible light irradiation at 25 °C is catalyzed by an aqueous colloidal system comprising a pseudoternary complex formed among carbon monoxide dehydrogenase (CODH), silver nanoclusters stabilized by polymethacrylic acid (AgNCs-PMAA), and TiO2 nanoparticles. The photocatalytic assembly, which is stable over several hours and for at least 250000 turnovers of the enzyme’s active site, was investigated by separate electrochemical (dark) and fluorescence measurements to establish specific connectivities among the components. The data show (a) that a coating of AgNCs-PMAA on TiO2 greatly enhances its ability as an electrode for CODH- based electrocatalysis of CO2 reduction and (b) that the individual Ag nanoclusters interact directly and dynamically with the enzyme surface, most likely at exposed cysteine thiols. The results lead to a model for photocatalysis in which the AgNCs act as photosensitizers, CODH captures the excited electrons for catalysis, and TiO2 mediates hole transfer from the AgNC valence band to sacrificial electron donors. The results greatly increase the benchmark for reversible CO2 reduction under ambient conditions and demonstrate that, with such efficient catalysts, the limiting factor is the supply of photogenerated electrons.
机译:在25°C的可见光照射下,可见光驱动的CO2选择性转换为周转频率为20 s -1 的CO被包含在碳之间形成的拟三元络合物的水性胶体体系催化一氧化碳脱氢酶(CODH),由聚甲基丙烯酸(AgNCs-PMAA)稳定的银纳米簇和TiO2纳米颗粒。通过单独的电化学(暗)和荧光测量研究了光催化装配体,该装配体在数小时内稳定,并至少有250000个酶活性位点的转换,以建立各组分之间的特定连接性。数据显示(a)TiO2上的AgNCs-PMAA涂层大大增强了其作为CODH还原的基于CODH的电催化电极的能力,并且(b)各个Ag纳米团簇与酶表面直接且动态地相互作用。在暴露的半胱氨酸硫醇。结果导致了一种光催化模型,其中AgNC充当光敏剂,CODH捕获激发的电子用于催化,TiO2介导空穴从AgNC价带转移到牺牲电子供体。结果大大提高了环境条件下可逆CO2还原的基准,并证明了使用这种有效催化剂的限制因素是光生电子的供应。

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