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Effect of organic capping layers over monodisperse platinum nanoparticles upon activity for ethylene hydrogenation and carbon monoxide oxidation

机译:单分散铂纳米颗粒上有机覆盖层对乙烯加氢和一氧化碳氧化活性的影响

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The influence of oleylamine (OA), trimethyl tetradecyl ammonium bromide (TTAB), and polyvinlypyrrolidone (PVP) capping agents upon the catalytic properties of Pt/silica catalysts was evaluated. Pt nanoparticles that were 1.5 nm in size were synthesized by the same procedure (ethylene glycol reduction under basic conditions) with the various capping agents added afterward for stabilization. Before examining catalytic properties for ethylene hydrogenation and CO oxidation, the Pt NPs were deposited onto mesoporous silica (SBA-15) supports and characterized by transmission electron microscopy (TEM), H_2 chemisorption, and elemental analysis (ICP-MS). PVP- and TTAB-capped Pt yielded mass-normalized reaction rates that decreased with increasing pretreatment temperature, and this trend was attributed to the partial coverage of the Pt surface with decomposition products from the organic capping agent. Once normalized to the Pt surface area, similar intrinsic activities were obtained regardless of the pretreatment temperature, which indicated no influence on the nature of the active sites. Consequently, a chemical probe technique using intrinsic activity for ethylene hydrogenation was demonstrated as an acceptable method for estimating the metallic surface areas of Pt. Amine (OA) capping exhibited a detrimental influence on the catalytic properties as severe deactivation and low activity were observed for ethylene hydrogenation and CO oxidation, respectively. These results were consistent with amine groups being strong poisons for Pt surfaces, and revealed the need to consider the effects of capping agents on the catalytic properties.
机译:评估了油胺(OA),三甲基十四烷基溴化铵(TTAB)和聚乙烯吡咯烷酮(PVP)封端剂对Pt /二氧化硅催化剂催化性能的影响。通过相同的步骤(在碱性条件下将乙二醇还原)合成了大小为1.5 nm的Pt纳米颗粒,随后添加了各种封端剂以使其稳定。在检查乙烯加氢和CO氧化的催化性能之前,将Pt NPs沉积在中孔二氧化硅(SBA-15)载体上,并通过透射电子显微镜(TEM),H_2化学吸附和元素分析(ICP-MS)进行表征。 PVP和TTAB封端的Pt产生的质量归一化反应速率随预处理温度的升高而降低,这种趋势归因于Pt表面被有机封端剂的分解产物部分覆盖。一旦归一化为Pt表面积,无论预处理温度如何,都可获得相似的固有活性,这表明对活性位点的性质没有影响。因此,证明了使用固有活性进行乙烯加氢的化学探针技术是估计Pt金属表面积的可接受方法。胺(OA)封端显示出对催化性能的不利影响,因为分别观察到乙烯加氢和CO氧化严重失活和活性低。这些结果与胺基是Pt表面的强毒物一致,并表明需要考虑封端剂对催化性能的影响。

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