Cardiff Catalysis Institute, School of Chemistry, Cardiff University, Cardiff, UK.
Department of Chemistry, Lanzhou University, Lanzhou, China.
Nat Chem. 2020 Jun;12(6):560-567. doi: 10.1038/s41557-020-0446-z. Epub 2020 Apr 13.
Single-site catalysts can demonstrate high activity and selectivity in many catalytic reactions. The synthesis of these materials by impregnation from strongly oxidizing aqueous solutions or pH-controlled deposition often leads to low metal loadings or a range of metal species. Here, we demonstrate that simple impregnation of the metal precursors onto activated carbon from a low-boiling-point, low-polarity solvent, such as acetone, results in catalysts with an atomic dispersion of cationic metal species. We show the generality of this method by producing single-site Au, Pd, Ru and Pt catalysts supported on carbon in a facile manner. Single-site Au/C catalysts have previously been validated commercially to produce vinyl chloride, and here we show that this facile synthesis method can produce effective catalysts for acetylene hydrochlorination in the absence of the highly oxidizing acidic solvents previously used.
单原子催化剂在许多催化反应中表现出高活性和选择性。通过强氧化水溶液或 pH 控制沉积从浸渍法合成这些材料通常会导致金属负载量低或金属物种范围宽。在这里,我们证明了通过从低沸点、低极性溶剂(如丙酮)中将金属前体制备简单地浸渍到活性炭上,可以得到原子分散的阳离子金属物种的催化剂。我们通过以简便的方式在碳上制备单原子 Au、Pd、Ru 和 Pt 催化剂来证明该方法的通用性。单原子 Au/C 催化剂此前已在商业上验证可用于生产氯乙烯,在这里我们表明,这种简便的合成方法可以在没有以前使用的强氧化酸性溶剂的情况下,用于乙炔氯化反应的有效催化剂。