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FePd nanowires modified with cyclodextrin as improved catalysts: effect of the alloy composition on colloidal stability and catalytic capacity

机译:FePd纳米线与环糊精改性改进的催化剂:合金的效果复合胶体稳定性和催化能力

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In the present work, FePd nanowires of different compositions, namely Fe85Pd15, Fe65Pd35, Fe55Pd45 and Fe0Pd100, were synthesized by electrodeposition into the nanopores of alumina membranes. The samples were characterized by XRD, SEM, EDS, XPS, and magnetometry. The surface of the nanowires was functionalized with a cyclodextrin derivative (βCDMOD14) to obtain stable aqueous dispersions. A comprehensive study on the relationship between the alloy composition and the catalytic capacity of FePd nanowires (FePdNWs) modified with βCDMOD14 was conducted through the analysis of the rate constants (kobs) of the reduction reaction of 4-nitrophenol to 4-aminophenol with sodium borohydride mediated by the FePdNWs in water. The highest value of kobs was observed for Fe55Pd45 NWs, but the catalytic performance of Fe65Pd35 NWs was similar to the previous one, in spite of its lower Pd content. The presence of Fe atoms and the synthesis method promotes the formation of an fcc phase in the alloy, which shows higher catalytic activity than pure Pd, possibly because of a synergistic effect exerted by Fe. The catalysts can be easily recovered by taking advantage of their magnetic properties, to be reused after reactivation with βCDMOD14.
机译:在目前的工作,FePd纳米线的不同组成,即Fe85Pd15、Fe65Pd35 Fe55Pd45和Fe0Pd100合成电沉积的纳米孔氧化铝膜。SEM、EDS、XPS和磁力测定。功能化的纳米线环糊精衍生物(βCDMOD14)来获得稳定的水性分散体。在合金成分之间的关系和FePd纳米线的催化能力(FePdNWs)修改与βCDMOD14通过分析速率常数(水)4-nitrophenol的还原反应与硼氢化钠由4-aminophenolFePdNWs在水中。观察Fe55Pd45交响乐团,但催化的性能Fe65Pd35 NWs是相似的前一个,尽管它降低Pd的内容。铁原子的存在和合成方法促进fcc的形成阶段合金,它显示了较高的催化活性纯Pd,可能是因为协同效应对Fe。回收利用的磁性属性,复活后被重用

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