首页> 外文期刊>Kinetics and catalysis >Genesis of the active-component precursor in the synthesis of Pt/Al2O3 catalysts: II. Synthesis of platinum hydroxo complexes on the alumina surface as precursors of the active component of Pt/Al2O3 catalysts
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Genesis of the active-component precursor in the synthesis of Pt/Al2O3 catalysts: II. Synthesis of platinum hydroxo complexes on the alumina surface as precursors of the active component of Pt/Al2O3 catalysts

机译:Pt / Al2O3催化剂合成中活性成分前体的产生:II。 Pt / Al2O3催化剂活性成分的前体在氧化铝表面上的铂羟基络合物的合成

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摘要

The thermal hydrolysis of chloroplatinate adsorbed on gamma-Al2O3 is a possible approach to the synthesis of surface platinum hydroxo complexes as precursors to the active component of supported platinum catalysts. It is demonstrated by EXAFS and diffuse reflectance spectroscopy that the surface chloro complexes undergo deep hydrolysis under hydrothermal conditions at various processing times and temperatures. The average oxygen coordination number of platinum in these complexes is as large as 4.5. According to gradient elution data obtained using both the competitive replacement of adsorbed complex anions and variation of the charged state of the oxide surface, the resulting hydrolyzed precursor differs from the conventional chloride precursor in the nature of binding to the surface and interacts with alumina via a coordination mechanism.
机译:吸附在γ-Al2O3上的氯铂酸盐的热水解是一种合成表面铂羟基配合物的方法,该表面铂是负载型铂催化剂活性成分的前体。通过EXAFS和漫反射光谱法证明,在水热条件下,在各种处理时间和温度下,表面氯配合物都会发生深度水解。这些络合物中铂的平均氧配位数高达4.5。根据使用竞争性取代吸附的配位阴离子并改变氧化物表面带电状态获得的梯度洗脱数据,所得水解前体与常规氯化物前体的不同之处在于与表面的结合性质,并通过氧化铝与氧化铝相互作用。协调机制。

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