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首页> 外文期刊>ACS catalysis >Insights into Liquid Product Formation during Carbon Dioxide Reduction on Copper and Oxide-Derived Copper from Quantitative Real-Time Measurements
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Insights into Liquid Product Formation during Carbon Dioxide Reduction on Copper and Oxide-Derived Copper from Quantitative Real-Time Measurements

机译:从定量的实时测量中,在二氧化碳中减少二氧化碳减少期间液体产品的见解

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We quantify the formation rates and faradaic efficiencies for liquid products of CO2 reduction on copper and oxide-derived copper in real time, in a single potential sweep. Compared with classical offline product analysis, the electrolyte characterization near the electrode favors the formation of aldehydes versus alcohols. When the CO2 reduction takes place in the presence of an aldehyde, the formation of the respective alcohol is enhanced, both in terms of onset potentials and partial current densities. The above imply that aldehydes and alcohols are formed sequentially. All determined products are formed at lower overpotential on oxide-derived copper, indicating that the electrode treatment generates different, more active sites. Overall, the presented methodology based on proton-transfer-reaction mass spectrometry can complement hard electron ionization by monitoring the transient formation of liquid products under dynamic conditions.
机译:在单一的扫描中,我们在实时量化CO2减少铜和氧化铜衍生铜的液体产物的形成率和野生效率。 与经典的离线产品分析相比,电极附近的电解质表征有利于醛与醇的形成。 当在醛存在下进行二氧化碳还原时,在发作潜在和部分电流密度方面,增强了各自的醇的形成。 上述暗示依次形成醛和醇。 所有确定的产物在氧化物衍生铜的较低过电位上形成,表明电极处理产生不同,更活跃的部位。 总的来说,通过在动态条件下监测液体产物的瞬态形成,基于质子转移反应质谱法的呈现方法可以通过监测液体产物的瞬态形成来补充硬电子电离。

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