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Speciation-controlled incipient wetness impregnation: A rational synthetic approach to prepare sub-nanosized and highly active ceria–zirconia supported gold catalysts

机译:物种控制的初期湿润浸渍:一种合理的合成方法,可制备亚纳米级且高活性的二氧化铈-氧化锆负载的金催化剂

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摘要

On the basis of calculated thermodynamic species distribution diagrams and by appropriately controlling the pH of aqueous HAuCl4 solutions, it has been possible to prepare, using a Speciation-controlled Incipient Wetness Impregnation (ScIWI) approach, Au catalysts supported on ceria–zirconia mixed oxides featuring both high gold loadings and excellent metal dispersions. This rational synthesis method is carried out at room temperature. It is both much simpler, in equipment terms, and less expensive than widely used Deposition–Precipitation (DP). Moreover, the use of ScIWI allows overcoming the severe limitations of previously assayed impregnation methods. With this procedure it is possible to prepare active catalysts in CO oxidation with high efficiency in terms of gold precursor usage, i.e. minimizing Au losses during synthesis. Therefore this, quite amenable, novel strategy for the facile preparation of highly dispersed supported gold catalysts gathers the necessary requirements for both its use at lab scale and an easy scaling-up to industrial levels.
机译:根据计算出的热力学物种分布图,并通过适当控制HAuCl4水溶液的pH值,可以使用物种控制的初始湿润浸渍(ScIWI)方法制备负载在二氧化铈-氧化锆混合氧化物上的Au催化剂高金含量和出色的金属分散性。这种合理的合成方法是在室温下进行的。与广泛使用的沉积沉淀法(DP)相比,从设备上讲它既简单又便宜。此外,ScIWI的使用可以克服先前测定的浸渍方法的严格限制。通过该方法,就金前体的使用而言,可以高效地在CO氧化中制备活性催化剂,即使合成过程中的Au损失最小。因此,这种易于制备的,高度分散的负载型金催化剂的新颖策略收集了在实验室规模使用和易于放大至工业水平的必要要求。

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