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Influence of iron substitution on formation and structure of Cu-based mixed oxides derived from layered double hydroxides

机译:铁取代对层状双氢氧化物衍生的铜基混合氧化物形成和结构的影响

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摘要

Cu/Zn/Fe/Al mixed metal oxides were prepared by calcination of layered double hydroxides (LDHs) carbonate precursors. The iron content had significant influence on the crystallinity, purity and thermal stability of as-synthesized Cu/Zn/Fe/Al-LDHs as well as the structure and composition of resultant mixed oxides obtained at 773 K. The mixed oxide with the Fe/Al ratio of 0.3:0.7 exhibited highest catalytic activity for oxidation of phenol by hydrogen peroxide. Moreover, the Fe-containing mixed oxides had stronger oxidation abilities than the Fe-free ones. The difference of catalytic activity is probably related to the difference in the amounts and types of composite oxides containing Cu2+ and/or Fe3+ cations on the surface of calcined products depending on the pristine nature of the starting LDHs precursors.
机译:通过煅烧层状双氢氧化物(LDHs)碳酸盐前体制备Cu / Zn / Fe / Al混合金属氧化物。铁含量对合成后的Cu / Zn / Fe / Al-LDHs的结晶度,纯度和热稳定性以及在773 K下获得的混合氧化物的结构和组成有重大影响。 Al∶0.3∶0.7的比例对过氧化氢氧化苯酚表现出最高的催化活性。此外,含铁混合氧化物比无铁氧化物具有更强的氧化能力。催化活性的差异可能与煅烧产物表面上含有Cu2 +和/或Fe3 +阳离子的复合氧化物的数量和类型的差异有关,具体取决于起始LDHs前体的原始性质。

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