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Controlling Metal Particle Size in Preparation of Pd/SiO_2 Catalysts

机译:控制金属粒径在制备Pd / SiO_2催化剂中

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Palladium nanoparticles have been fabricated on Aerosil 200 support using (i) "Controlled Colloidal Synthesis", (ii) PDDA stabilized Pd sol (both liquid phase reduction with ethanol) and (iii) incipient wetness method (as reference). Oxidation/reduction treatment was employed to remove the carbonaceous impurities from the samples during which no change in the particle size was experienced. However, the turnover frequency referred to Pd surface exposed significantly changed and FTIR technique was used to monitor the alteration of Pd surface by means of CO chemisorption. It turned out that after treatment the distribution of the overlapping stretching band system of the prevailing bridge CO forms was changed indicating either a change in the face orientation of Pd crystallites, or formation of clean Pd faces in oxidation/reduction process.
机译:使用(i)“受控胶体合成”,(ii)PDDA稳定的PD溶胶(乙醇液相减少)和(III)初期湿度法(作为参考)(作为参考值)的PDDA稳定的Pd溶胶(作为参考)的液相减少)制造钯纳米粒子。使用氧化/还原处理来从样品中除去碳质杂质,在此期间没有经历粒度的变化。然而,通过CO Chemo吸制来监测PD表面的流转频率明显改变和FTIR技术来监测PD表面的改变。事实证明,在处理之后,改变了普遍桥梁CO形式的重叠拉伸带系统的分布,表示PD微晶的面部方向的变化,或在氧化/还原过程中形成清洁PD面。

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