Modulating the Electronic Metal-Support Interactions in Single-Atom Pt1-CuO Catalyst for Boosting Acetone Oxidation was written by Jiang, Zeyu;Tian, Mingjiao;Jing, Meizan;Chai, Shouning;Jian, Yanfei;Chen, Changwei;Douthwaite, Mark;Zheng, Lirong;Ma, Mudi;Song, Weiyu;Liu, Jian;Yu, Jiaguo;He, Chi. And the article was included in Angewandte Chemie, International Edition in 2022.Related Products of 20427-59-2 This article mentions the following:
The development of highly active single-atom catalysts (SACs) and identifying their intrinsic active sites in oxidizing industrial hazardous hydrocarbons are challenging prospects. Tuning the electronic metal-support interactions (EMSIs) is valid for modulating the catalytic performance of SACs. We propose that the modulation of the EMSIs in a Pt1-CuO SAC significantly promotes the activity of the catalyst in acetone oxidation The EMSIs promote charge redistribution through the unified Pt-O-Cu moieties, which modulates the d-band structure of at. Pt sites, and strengthens the adsorption and activation of reactants. The pos. charged Pt atoms are superior for activating acetone at low temperatures, and the stretched Cu-O bonds facilitate the activation of lattice oxygen atoms to participate in subsequent oxidation We believe that this work will guide researchers to engineer efficient SACs for application in hydrocarbon oxidation reactions. In the experiment, the researchers used many compounds, for example, Cuprichydroxide (cas: 20427-59-2Related Products of 20427-59-2).
Cuprichydroxide (cas: 20427-59-2) belongs to copper catalysts. Copper catalyst has received great attention owing to the low toxicity and low cost. Copper nanoparticles can also catalyze the coupling reaction of nitrogen-containing nucleophiles, phenols, thiols, xanthogenates, selenium ruthenium nucleophiles and the like.Related Products of 20427-59-2
Referemce:
Copper catalysis in organic synthesis – NCBI,
Special Issue “Fundamentals and Applications of Copper-Based Catalysts”